Chinese surveillance and monitored payment networks face an encrypted blue privacy network across a strategic shipping corridor.

China · Capital Controls · Privacy Coins · Neutral Money

Private From Washington, Visible to Beijing: China, Privacy Coins and Financial Sovereignty

China is building digital money that can move beyond Washington’s financial reach without moving beyond Beijing’s control. That contradiction reveals a wider monetary paradox: the more completely a state controls its currency, the less neutral that currency becomes to everyone else. In a fragmenting world, the search is no longer only for another sovereign currency. It is for money that no sovereign can privilege itself within.

China is not retreating from digital money. It is drawing a harder boundary around who may issue it, who may supervise it and who may move it beyond the state’s view.

In February 2026, the People’s Bank of China and seven other authorities reinforced the country’s prohibition on virtual-currency business, classified related commercial activity as illegal financial activity and prohibited unauthorized offshore issuance of yuan-linked stablecoins. At the same time, the authorities distinguished prohibited private currencies from state-approved tokenization and continued expanding the digital yuan, or e-CNY.[1]

China’s state-backed digital-currency infrastructure is no longer a minor experiment, although it has not displaced the country’s established retail-payment networks. By the end of September 2025, official figures placed cumulative e-CNY activity at 14.2 trillion yuan across 3.32 billion transactions and 225 million personal wallets. Reuters reported in May 2026 that the latest official data, measured as of November 2025, placed cumulative activity at approximately 16.7 trillion yuan. By comparison, China’s UnionPay network processed 279 trillion yuan in card transactions during 2025 alone.[2]

China is simultaneously developing payment infrastructure intended to reduce exposure to dollar-based correspondent banking, foreign sanctions and political pressure from the United States. Yet its domestic monetary design is built around legal identity, regulatory access, transaction limits and the preservation of state control over capital movement.

China’s preferred monetary system is private from foreign adversaries, selectively private from commercial platforms and ultimately visible to the Chinese state.

Privacy coins offer a fundamentally different arrangement. They do not merely move visibility from one government to another. They attempt to remove the assumption that any government, corporation or privileged institutional observer should automatically receive the complete financial graph.

The conflict is therefore not simply between China and cryptocurrency.

It is a conflict between sovereignty over money and sovereignty within money.

This article develops that distinction into a broader framework: the sovereignty–neutrality frontier. A currency becomes more useful to its issuing state as identity, programmability, capital controls and supervisory access become stronger. The same features can make it less trustworthy to foreign states, companies and communities that do not want the issuer to retain a unilateral advantage.

The reverse is also true. Money becomes more neutral as no participant can freeze it, rewrite its issuance, inspect every payment or grant itself superior access. But a system that offers that neutrality necessarily limits the power of every state—including the state that hopes to use it against its rivals.

That is China’s dilemma. It is also the defining monetary problem of the emerging multipolar order.

Conceptual continuity: This article extends the ryo.news framework developed across The End of Free-Floating Fiat, God, State, and Network, When Institutions Fail, and Imagined Communities 2.0.

I. The State Leviathan Perfected

China’s cryptocurrency restrictions are sometimes described as evidence that the country rejected blockchain technology. That interpretation is incorrect.

In October 2019, Xi Jinping told a study session of the Chinese Communist Party’s Politburo that blockchain should be treated as an important breakthrough in indigenous technological innovation. He identified applications spanning digital finance, supply chains, industrial systems and public services.[3]

The state’s objection was never that distributed ledgers were technologically useless. The objection was that public cryptocurrency networks could create monetary issuance, asset markets, information channels and capital flows outside authorized institutions.

Chen Chun, a member of the Chinese Academy of Engineering and director of Zhejiang University’s Blockchain Research Center, articulated this distinction through his work on consortium blockchains and blockchain supervision. Chen argued that regulatory technology should develop alongside blockchain technology, including node tracking, visualization, penetrating supervision and active detection of activity on public chains.[4]

Cai Weide, formerly a professor at Beihang University and a researcher on blockchain-based financial infrastructure, developed the principle further at the system-design level. Cai and his co-authors proposed dual-chain architectures separating account information from transaction activity. Related patents attributed to Cai describe automated regulatory systems that store financial transaction records on blockchains, apply configurable rules and generate supervisory reports by reading ledger data in real time. The regulatory engine can operate beside the blockchain or execute through on-chain smart contracts.[5]

The significance is not that Cai designed a privacy coin with a concealed government master key. It is that supervision becomes a native function of the financial architecture rather than an investigation conducted only after suspicious activity has occurred.

Wang Yongli, a former vice-president of the Bank of China, has expressed the monetary principle beneath this design. Wang argues that modern money rests on sovereign law and national credit, and that decentralized digital assets cannot simply replace the state-issued unit around which taxation, accounting, debt and economic policy are organized.[6]

This fits a conceptual lens developed in God, State, and Network. Money has historically been enforced by the dominant organizing power of its era:

  • God and tradition: precious-metal money reinforced by moral belief, custom and inherited legitimacy.
  • The State: fiat currency enforced through taxation, law, banking regulation and ultimately territorial power.
  • The Network: digital scarcity and transaction rules enforced through distributed computation and cryptography.

The digital yuan is the State Leviathan perfected. It does not merely digitize fiat money. It allows code to reinforce the state’s control over identity, circulation, policy implementation and financial information.

Privacy coins represent the opposing direction of the Network Leviathan. Their purpose is not to make sovereign administration more precise. It is to make certain monetary guarantees independent of sovereign discretion.

Monetary architecture Source of authority Primary advantage Primary vulnerability
Digital yuan Chinese sovereign law, central-bank issuance and authorized operators Policy integration, domestic settlement, controlled anonymity and enforceable capital rules Foreign users remain exposed to Chinese policy and supervisory privilege
Permissioned institutional blockchain Approved consortium members and embedded regulatory rules Efficient coordination with identifiable participants and auditable activity Participation and visibility depend on institutional permission
Transparent decentralized cryptocurrency Open protocol and distributed consensus Issuer independence and censorship resistance Permanent public transaction intelligence
Privacy-by-default cryptocurrency Open protocol, cryptography and distributed consensus Issuer neutrality, fungibility and protection from universal transaction surveillance Lower institutional liquidity, regulatory pressure and greater difficulty enforcing comprehensive capital controls
The digital yuan and a privacy coin are not merely different payment technologies. They encode opposing answers to the question of where ultimate monetary authority should reside.

II. Privacy With a Ceiling

This political architecture finds its technical expression in the concept of controllable anonymity, sometimes translated as managed anonymity.

Yao Qian, the former director of the People’s Bank of China’s Digital Currency Research Institute, was one of the principal architects of China’s early central-bank digital-currency research. His work described a system in which privacy could exist between ordinary participants while authorized state institutions retained the ability to identify parties and trace transactions under defined conditions.[9]

The objective was to preserve selected cash-like properties without allowing digital currency to become an uncontrolled channel for corruption, money laundering, tax evasion, gambling or capital flight.

The People’s Bank of China later formalized the principle as anonymity for lower-value activity and legal traceability for higher-value transactions. Its model combines tiered wallets, varying identification requirements, transaction limits and risk-monitoring capabilities.[10]

The e-CNY is not designed as a public ledger on which every citizen can examine every payment. China argues that it can reduce the personal information exposed to merchants, payment platforms and unrelated commercial intermediaries.

This can be a genuine privacy benefit. A merchant should not automatically receive a customer’s complete identity profile merely because it processes a small retail purchase.

But controllable anonymity separates privacy into different relationships:

Form of privacy Protection from whom? Position within the e-CNY model
Horizontal privacy Merchants, counterparties and unrelated private actors Partially supported through data minimization and tiered wallets
Platform privacy Payment companies and commercial data aggregators Potentially strengthened by reducing the information held by private platforms
Foreign-state privacy Foreign governments, sanctions authorities and external intelligence systems A strategic objective of sovereign Chinese payment infrastructure
Vertical privacy The issuing state and authorized supervisory institutions Conditional rather than absolute

In summary: controllable anonymity promises horizontal privacy—protection from peers and platforms—while preserving vertical visibility for the state. This is a coherent design for domestic monetary governance, but it is not neutral money. Neutrality requires that no participant, including the state, possess a unilateral advantage.

China does not demand that every participant see every transaction. It demands that the state preserve a lawful path to visibility.

Privacy is therefore not an unconditional property of the currency. It is a limited status that can end when transaction value, wallet tier, risk analysis or legal authority activates greater scrutiny.

Controllable anonymity does not ask whether a transaction is private. It asks who possesses the authority to terminate that privacy.

A system in which privacy can be terminated by a sovereign authority is only as protective as that authority’s present rules, future intentions and institutional restraints. Those conditions can change while the accumulated financial record remains.

Controllable anonymity may protect users from merchants and private platforms without creating neutral money. Neutrality requires that no participant possess a unilateral technical privilege unavailable to every other participant.

III. The Reverse Sovereignty Stack

Balaji Srinivasan’s theory of the network state begins from the opposite political direction.

Balaji defines a network state as an aligned online community capable of collective action that eventually acquires territory and diplomatic recognition. His broader model includes an integrated cryptocurrency, a collectively governed treasury, an on-chain census and a social structure that begins online before acquiring a physical footprint.[7]

Traditional states begin with territory and organize the people located within it. A network state begins with people and attempts to organize territory around them.

As developed in Imagined Communities 2.0, the network-state stack can be represented as:

Identity → Capital → Coordination → Territory → Recognition

A community first develops a shared narrative and membership. It then requires capital that cannot be casually frozen by an external institution. Capital enables coordination. Coordination creates durable institutions. Those institutions may eventually acquire territory and recognition.

China’s state network builds the stack in reverse.

Network-state construction China’s state-network construction
Identity: a voluntary community forms around a shared narrative. Territory and recognition: an existing sovereign state begins with internationally recognized authority.
Capital: the community adopts a network-native treasury asset. Authority: law determines the permitted institutions and payment infrastructure.
Coordination: digital institutions organize collective action. Identity: wallets and legal persons are integrated into the state’s administrative system.
Territory: the network acquires physical locations or an archipelago. Capital: the digital currency encodes monetary policy and capital controls.
Recognition: established states acknowledge the new polity. Coordination: code extends state administration into commerce and cross-border settlement.

The network state builds sovereignty upward from identity and capital. China projects sovereignty downward from territory and law into identity and capital.

That difference explains why privacy-preserving money occupies such an important position in the network-state model. A digital community cannot claim meaningful exit if its treasury can be frozen by the institutions it seeks to exit or if every internal relationship remains visible to political rivals.

In 1998, cryptographer Wei Dai proposed b-money, a system through which pseudonymous participants could exchange value and enforce contracts without relying on conventional government institutions.[8]

What was once a thought experiment is now a functioning financial category. Open monetary networks settle value across borders, survive the prohibition of individual governments and provide the capital layer around which digital communities can organize.

This is the source of what ryo.news has called sovereign gravity:

Sovereign gravity is the tendency of credible, difficult-to-seize capital to attract not only savings and commerce, but infrastructure, membership and eventually governance.

A sovereign currency creates gravity inside the jurisdiction of its issuer. Neutral network money can create gravity across jurisdictions because participation does not require political trust in the issuer.

IV. Capital Controls as a Monetary Perimeter

China’s position on privacy coins cannot be understood without its capital controls.

China permits international payments connected to legitimate trade and other current-account activity, but controls continue to apply to much of the capital account. Residents’ overseas investments, foreign participation in domestic markets, currency conversion and cross-border transfers remain subject to regulated channels and administrative limits.[11]

These restrictions serve several purposes:

  • Limiting sudden and destabilizing capital flight.
  • Protecting foreign-exchange reserves.
  • Reducing pressure on the renminbi during periods of uncertainty.
  • Preserving greater autonomy over domestic interest rates and liquidity.
  • Preventing uncontrolled substitution into foreign currencies.
  • Maintaining state knowledge of large cross-border financial movements.

Capital controls are part of China’s macroeconomic defence system. They can insulate domestic monetary policy from external shocks, but they also limit the international attractiveness of the renminbi because foreign holders may remain uncertain about convertibility, liquidity and the ability to move funds freely.

The restrictions create an incentive to search for alternative exits.

A 2026 working paper by Maggie Hu, Adrian Lee and Tālis Putniņš used blockchain and market data to estimate that capital flight accounted for more than one-quarter of Chinese Bitcoin exchange volume during the period studied. The researchers found that activity increased during periods of greater economic-policy uncertainty and produced a Bitcoin premium against the renminbi.[12]

Bitcoin can facilitate capital movement, but its public ledger creates investigative opportunities. Once an address is connected to an exchange, device, business or real-world identity, related transactions can be clustered and followed.

Centralized stablecoins provide another path. They can move rapidly across borders, but issuers may freeze addresses, enforce blacklists and cooperate with regulators. Stablecoins also pass through centralized exchanges where identification and transaction records may be obtained.

Privacy coins reduce both forms of control.

When sender information, recipient information and transaction amounts are concealed at the protocol level, an observer may be unable to reconstruct capital movement merely by examining the blockchain. When conversion also occurs through peer-to-peer or decentralized markets, the state’s ability to identify the entry and exit points weakens further.

This does not make privacy coins perfectly invisible. Exchange records, compromised devices, counterparties, network metadata and user mistakes can still reveal information.

But they change the economics of surveillance.

Instead of receiving a permanent public transaction graph and attempting to identify its participants, an investigator may need to acquire information from endpoints, infiltrate services, correlate network traffic or compel disclosure from individual users.

For China, the problem with privacy coins is not only that they can move capital. It is that they can move capital without generating the standardized evidence required to preserve an effective capital-control system.

The balance is dynamic rather than fixed. Improvements in zero-knowledge proofs, decentralized exchange infrastructure and network-layer anonymity reduce the information exposed by each stage of a transaction. States can respond through gateways, endpoint investigations and stronger enforcement, but those measures operate around the protocol rather than restoring a universal view inside it.

This creates an asymmetry. A capital-control system must identify a sufficiently large proportion of unauthorized flows to remain credible. A private monetary system does not need to defeat every investigation. It needs only to make comprehensive monitoring technically and economically impractical.

China’s broader doctrine of cyber sovereignty follows the same logic. Fang Binxing and Chinese policy documents treat networks, data and digital infrastructure as domains of national authority.[13][14] A public blockchain challenges exclusive administration. A privacy coin challenges both administration and automatic visibility.

V. Who Holds the View Key?

Almost every modern digital-currency system uses cryptography. The decisive difference is not whether encryption exists.

It is whether privacy is optional or mandatory, whether disclosure makes the underlying transaction public, and who possesses the authority to reveal financial information.

In the e-CNY model, the state defines the institutional hierarchy through which transaction information can be obtained. Privacy may exist between ordinary participants, but authorized state access remains a system requirement.

Bitcoin removes the central issuer but publishes its transaction graph. Anyone can inspect the movement of funds, while specialized analytics can attempt to connect addresses and transaction clusters to real-world actors.

Zcash supports transparent and shielded transaction environments. Transparent addresses expose transaction information publicly in a manner comparable to Bitcoin. Shielded addresses use zero-knowledge proofs to conceal the sender, recipient and amount.

Zcash therefore offers optional privacy at the protocol level. The practical default depends on the wallet, exchange and address type. Some wallets support or encourage shielded activity by default, while transparent addresses remain part of the protocol. Users of shielded Zcash can share viewing keys, and Zcash has documented a draft payment-disclosure mechanism for proving details of a specific payment.[15]

Privacy Pools, proposed by Vitalik Buterin, Ameen Soleimani and their co-authors, explore whether users can prove that funds do not originate from a designated prohibited set without exposing their complete transaction histories.[16]

Monero applies privacy protections across ordinary transactions by default. Its protocol uses ring signatures, stealth addresses and Ring Confidential Transactions to conceal the sender, recipient and amount, although exchange records, endpoint information, network observation and user mistakes can still expose information.[17]

Ryo Currency also applies privacy by default, but its disclosure model differs from Zcash’s dual transparent-and-shielded structure. Ordinary Ryo transactions conceal origins, destinations and amounts. A user can create a view-only wallet to disclose incoming activity without surrendering spending authority and can use transaction, spend or reserve proofs for defined verification purposes.[31][33]

This is better described as optional disclosure than optional transparency. The underlying transaction does not become part of a permanently public transaction class. The user supplies the cryptographic information required to reveal or prove a defined fact.

System Privacy model Default visibility Disclosure or audit mechanism Neutrality implications
Digital yuan Controllable anonymity within a state-authorized system Limited visibility to ordinary counterparties; institutional traceability preserved Authorized operators and state institutions obtain information under system rules and law Sovereign and efficient, but not neutral between the state and other participants
Bitcoin Public pseudonymous ledger Addresses, amounts and transaction relationships are publicly visible No special disclosure is required because the ledger is already public Issuer-neutral, but strategic activity remains globally observable
Centralized stablecoin Usually public-chain settlement with centralized asset administration On-chain activity is normally publicly visible Issuers and regulated gateways may connect identities to transactions or act on funds Liquid and convenient, but exposed to issuer, jurisdiction and freezing risk
Zcash Dual transparent-and-shielded architecture Depends on address and wallet use; transparent activity is public, shielded activity is concealed Viewing keys and draft payment-disclosure mechanisms for shielded activity Can provide strong neutrality when shielding is used, but privacy is not universal across the protocol
Privacy Pools Private activity combined with proof-based association-set compliance Transaction details remain concealed User proves selected properties without disclosing the complete history Shows that privacy and rule-based verification need not require a universal observer
Monero Privacy by default Origins, destinations and amounts are concealed across ordinary transactions Targeted auditability depends on viewing information, wallet records and endpoint evidence Strong protocol-level fungibility; institutional liquidity and compliance integration remain constraints
Ryo Currency Privacy by default with selective disclosure Origins, destinations and amounts are concealed; there is no equivalent transparent transaction pool View-only wallets, transaction proofs, spend proofs and reserve proofs Strong alignment with confidential bearer money, but reserve-scale liquidity and infrastructure are not yet present

The Chinese model places the power to reveal within the sovereign legal hierarchy.

Zcash allows value to move through either a transparent or shielded structure. For shielded activity, the holder can provide selected viewing access without giving away spending authority.

Ryo reverses the default. The transaction remains private unless the user deliberately supplies viewing information or cryptographic proof for a defined purpose.

Rejecting universal privileged access therefore does not mean rejecting auditing or accountability in every form. A business can maintain a view-only wallet. A sender can prove that a transaction occurred. A reserve holder can prove a defined balance. A zero-knowledge system can prove that rules were satisfied without publishing the user’s complete financial history.

The decisive design question is not whether a currency can reveal information. It is whether every transaction begins visible, whether privacy must be actively chosen, and whether the state or the holder controls what is revealed.

The progression from public ledgers to optional shielding and then to privacy by default with selective disclosure can be understood as an evolution in digital bearer money.

Bitcoin demonstrated that ownership could be verified without a central issuer. Zcash demonstrated that validity could be verified without publicly exposing all of the information being verified. Privacy-by-default systems attempt to make that confidentiality the ordinary condition rather than a special transaction path.

This does not prove that one architecture will replace every other system. State currencies, transparent ledgers and regulated stablecoins each serve functions private currencies may not. But where fungibility, geopolitical neutrality and protection from economic intelligence are the principal requirements, default privacy is a more complete design than permanent public visibility.

VI. The Hard Trade-Off

The Strongest Case for State Visibility

A serious analysis should not dismiss China’s concerns as mere authoritarian hostility toward privacy.

Highly private digital money creates genuine enforcement problems. Governments investigate fraud, theft, corruption, sanctions evasion, terrorist financing, tax offences and organized crime through financial records. Transaction analysis can identify related accounts, locate stolen assets and reveal criminal networks.

A globally transferable privacy coin can also move more efficiently than physical cash. A private key can represent substantial value and cross a border without the monetary asset physically passing through a customs checkpoint.

China faces additional macroeconomic risks. Rapid capital flight could weaken the renminbi, accelerate reserve depletion, reduce liquidity within domestic financial institutions and force disruptive policy intervention. The expectation of depreciation can become self-reinforcing as residents attempt to move money abroad.

China can therefore make a rational state-security argument:

  • Money is a public institution whose integrity affects the entire economy.
  • Large anonymous capital flows can destabilize exchange-rate and banking systems.
  • The state cannot enforce financial law without access to relevant evidence.
  • Digital payments should protect users from commercial exploitation without creating immunity from targeted investigation.
  • A sovereign government should not allow private protocols to displace its monetary authority without public consent.

Nor are such concerns unique to China. The Financial Action Task Force requires jurisdictions to impose anti-money-laundering controls on virtual-asset service providers and identifies anonymity-enhancing technologies and peer-to-peer activity as areas of heightened risk. The European Union’s 2024 anti-money-laundering regulation restricts anonymous crypto accounts and services designed to increase transaction obfuscation.[18]

Democratic governments may provide stronger judicial review, political competition and legal protections than China, but they also seek identity-linked gateways, transaction records and investigative access.

The Strongest Case for Financial Privacy

The privacy argument begins from a different understanding of financial data.

A transaction history can reveal political donations, religious associations, medical treatment, journalistic sources, business relationships, travel patterns, personal networks and economic distress.

A complete payment history is not merely an accounting record. It is a map of a person’s life.

Privacy advocates therefore reject the assumption that the state should possess universal financial visibility merely because targeted investigations are sometimes legitimate. They distinguish disclosure after due process from surveillance by design.

A conventional investigation begins with a suspected offence and seeks relevant evidence. A universally traceable digital-currency system can reverse that order by collecting the complete financial graph first and determining its future uses later.

David Chaum and his co-authors have demonstrated that a central bank could theoretically issue digital currency while using cryptography to protect transaction privacy.[19] Geoffrey Goodell, Hazem Al-Nakib and Paolo Tasca have similarly proposed a regulated digital-currency architecture using non-custodial wallets and privacy-enhancing cryptography.[20]

Alex Gladstein of the Human Rights Foundation extends the argument from design to political consequence. His work describes how banking access, account freezing and payment surveillance can be used against activists, journalists and civil-society organizations.[21]

Bitcoin offers censorship resistance and self-custody, but its public ledger remains traceable. Privacy-coin advocates argue that censorship resistance is incomplete when an adversary can map donors, counterparties and organizational activity.

There is also a narrower monetary argument that does not depend exclusively on human-rights commitments.

Money that can be frozen by an issuer contains counterparty risk. Money whose complete history is public exposes its holder to commercial, political and sanctions risk. Money whose transfer depends on another state’s infrastructure cannot be completely neutral between geopolitical blocs.

Privacy is not merely a civil liberty attached to money. In a fragmented international system, it can become a component of monetary neutrality.

This does not make every privacy coin a suitable reserve asset. Reserve managers require deep liquidity, reliable custody, operational resilience, legal authority, price stability and the ability to mobilize assets during a crisis. Privacy coins presently satisfy some elements of neutrality more convincingly than they satisfy conventional reserve-management requirements.

VII. Russia and Iran: Who Receives Sovereign Privacy?

The contradiction becomes geopolitical when China’s strategic partners seek protection from Western financial power.

Russia and Iran have both faced extensive sanctions, restrictions on banking access and pressure on their ability to settle international trade. Both have incentives to develop financial channels that are harder for the United States and its allies to interrupt.

But “using cryptocurrency” can describe several politically different systems.

Level of use Primary objective Most valuable properties Why the state may support or resist it
State and strategic settlement Oil exports, reserve movement, sanctions resistance and official cross-border trade Liquidity, reliable counterparties, large transaction capacity and protection from foreign seizure The state may support alternative settlement while requiring domestic auditability and approved gateways
Business and institutional use Supplier payments, shipping, insurance, procurement and settlement beyond conventional banks Commercial confidentiality, fungibility and censorship resistance Businesses benefit from privacy, while governments demand reporting and control at conversion points
Citizen use Savings protection, remittances, private commerce and movement beyond capital restrictions Self-custody, accessibility, privacy and resistance to account freezing The same properties that protect citizens from foreign pressure can protect them from their own government

Russia’s Progression From Transparent Crypto to the Privacy Question

Russia changed its legal framework in 2024 to permit experimental cryptocurrency use in international settlements. In December 2024, the Russian finance minister confirmed that companies had begun using Bitcoin and other digital assets in foreign trade.[22]

Reuters later reported that cryptocurrency had been used in parts of Russia’s oil trade with China and India. Intermediaries converted local-currency payments into digital assets and then into the currency ultimately required by the Russian exporter.[23]

Transparent cryptocurrencies can work in this role because they possess global liquidity and can move beyond conventional correspondent banks. But they do not provide financial confidentiality.

Once an address is attributed to an oil company, trading intermediary, bank or state-linked institution, an external observer may be able to examine transaction timing, balances, related addresses and movement between counterparties. A public blockchain can remove the banking intermediary while creating a permanent source of economic intelligence.

Centralized stablecoins introduce another vulnerability. After Tether froze Russia-linked USDT associated with the sanctioned Garantex exchange, a Russian Finance Ministry official argued that Russia should develop domestic stablecoins linked to currencies other than the dollar.[24]

A domestic stablecoin could remove dependence on a foreign issuer. It would not necessarily solve transaction visibility. If it circulates on a transparent ledger, foreign analytics firms and intelligence services may still reconstruct relevant financial relationships.

This creates a logical case for privacy-preserving settlement at the business or state level. It could conceal commodity buyers, strategic procurement, shipping relationships, reserve movements and the routes through which funds are converted and repatriated.

Privacy coins would nevertheless create difficulties for the Russian state. They generally possess less institutional liquidity than Bitcoin or major stablecoins and are harder to integrate into conventional accounting and compliance systems. More importantly, a protocol that hides Russian trade from Washington can also hide Russian capital from Moscow.

Russia has a strategic reason to seek privacy for external settlement and a political reason to resist privacy that remains equally available to businesses, officials and citizens inside Russia.

Iran: Crypto Access Becomes Part of the Sanctions Battlefield

Iran has developed a substantial cryptocurrency economy under sanctions and severe pressure on the rial.

In April 2026, US Treasury Secretary Scott Bessent publicly described Iran’s access to cryptocurrency as one of the channels targeted through the Treasury Department’s Economic Fury campaign. In June, the US Treasury sanctioned Nobitex and three other Iranian digital-asset exchanges, alleging that the platforms had supported sanctions evasion and state-linked financial activity.[34][25]

Cryptocurrency is therefore no longer being treated as a marginal escape channel. Washington increasingly treats access to exchanges, stablecoins, wallets and digital-asset liquidity as part of the same sanctions battlefield as oil tankers, exchange houses and correspondent banks.

The campaign also demonstrates the limitations of transparent and centralized rails. Public blockchain activity can be followed, exchange infrastructure can be sanctioned and centralized issuers can be pressured to freeze identified assets.

At the same time, privacy coins are not merely theoretical or inaccessible inside Iran.

Monero is offered to Iranian users through at least three Iran-facing exchanges. Bit24 provides direct XMR purchase and sale services, OK Exchange maintains a Monero market and Tabdeal lists XMR among its available cryptocurrencies.[35]

This does not establish that the Iranian government, the Central Bank of Iran or the Islamic Revolutionary Guard Corps uses Monero.

It establishes something different: domestic infrastructure through which citizens and businesses can acquire a privacy-by-default currency already exists.

For the Iranian state, cryptocurrency can protect sanctioned commerce from foreign pressure. For an Iranian citizen, Monero can protect savings and counterparties from both foreign surveillance and domestic observation.

The state may welcome the first use while fearing the second.

Iran’s access to cryptocurrency is targeted from outside because it can weaken sanctions. Privacy coins create an additional problem for Tehran because they can also weaken the state’s visibility inside Iran.

The Strait of Hormuz and the Zcash Signal

The Strait of Hormuz demonstrates how quickly the difference between cryptocurrency and private cryptocurrency can become strategically relevant.

During the 2026 conflict, reports indicated that Iran and IRGC-linked intermediaries were demanding or negotiating payments for vessel passage through the strait. Reported mechanisms included Chinese yuan, stablecoins and Bitcoin. The US Treasury later warned that passage payments made in fiat currency, digital assets, swaps or other forms could create sanctions exposure.[36]

Ryo.news followed the development through The Yuan Ultimatum and Strait of Crypto.[37]

Zcash rose sharply during ceasefire and Hormuz-payment speculation. Market discussion connected the rally with the possibility that privacy-preserving assets could become useful for strategic shipping payments. Contemporary market analysis also linked the move to broader risk sentiment and renewed demand for privacy coins rather than to a confirmed Zcash-specific adoption event.[38]

No reliable evidence established that Iran accepted ZEC for passage. The strongest public reporting identified yuan, stablecoins or Bitcoin. Iran’s central bank later claimed that toll payments had been made in cash rather than cryptocurrency, contradicting some earlier reports.[39]

The ZEC rally should therefore be treated as a market signal, not evidence of state adoption.

Its relevance lies in what the market recognized:

  • A yuan payment remains visible to participating banks and governments.
  • A stablecoin payment can be traced and potentially frozen by its issuer.
  • A Bitcoin payment can be followed across a permanent public ledger.
  • A properly shielded private payment can conceal the commercial relationship itself.

For a shipping company, privacy could protect cargo information, insurance arrangements, counterparties and negotiated transit terms. For Iran, it could conceal revenue and weaken sanctions analysis. For a ship owner or flag state, it could complicate auditing and proof of compliance.

The Strait of Hormuz revealed the strategic logic of privacy coins even without proving that one was used.

The Protocol Does Not Check Passports

China, Russia and Iran may attempt to reserve strong financial privacy for approved companies, state institutions and strategic trade while preventing citizens from using the same systems independently.

Regulated gateways can partially enforce that distinction. Governments can license exchanges, identify corporate wallet holders, require internal accounting records and demand transaction proofs or viewing information.

But the protocol itself cannot reliably distinguish a state-owned exporter from a private business, journalist or citizen moving savings abroad.

A system private enough to frustrate American transaction analysis is capable of frustrating Chinese, Russian or Iranian analysis. A zero-knowledge proof does not alter its privacy properties according to the nationality or political status of the person generating it.

The protocol does not grant privacy according to geopolitical rank. States can regulate access, but they cannot make neutral cryptography loyal to one sovereign.

This is why privacy coins can become more valuable to sanctioned states and more threatening to their domestic systems at the same time. Their strategic utility and political danger arise from the same neutrality.

VIII. China’s Sovereignty Trilemma

China’s international monetary strategy must reconcile three objectives that cannot be fully maximized at the same time.

Objective One: Reduce Foreign Financial Leverage

China benefits from payment channels that reduce dependence on dollar clearing, Western correspondent banks and infrastructure exposed to American sanctions.

In June 2025, People’s Bank of China Governor Pan Gongsheng called for a more multipolar international monetary system and announced the creation of an international e-CNY operations centre in Shanghai.[26]

Objective Two: Internationalize Chinese Monetary Infrastructure

The renminbi’s role in international trade has grown, but restrictions on foreign participation, resident investment abroad, offshore liquidity and convertibility continue to constrain broader adoption.[11]

China is attempting to overcome part of this limitation through payment infrastructure.

Project mBridge began as a collaboration among the BIS Innovation Hub, the People’s Bank of China’s Digital Currency Institute, the Hong Kong Monetary Authority, the Bank of Thailand and the Central Bank of the United Arab Emirates. It was designed as a shared multi-CBDC platform through which central and commercial banks could conduct direct cross-border settlement.[27]

The BIS withdrew from the project in late 2024, after which participating central banks continued its development. By January 2026, cumulative mBridge transactions had surpassed US$55 billion, with the e-CNY accounting for approximately 95% of reported volume.[28]

China’s e-CNY international operations centre, launched in Shanghai in September 2025, added cross-border payment, blockchain-service and digital-asset platforms intended to advance international cooperation and interoperability.[29]

Objective Three: Preserve Domestic Monetary Control

China must simultaneously enforce capital controls, manage bank liquidity, prevent uncontrolled currency substitution and maintain the renminbi’s role as the domestic unit of account.

A system that allows money to leave the country privately and permissionlessly weakens each objective.

Chinese objective Preferred infrastructure Why privacy coins create tension
Protection from foreign sanctions State-controlled cross-border settlement, e-CNY and mBridge Privacy coins can provide stronger sanctions resistance, but the state cannot control who else uses them
Renminbi internationalization Digital-yuan platforms, regulated banks and approved trade corridors Independent private currencies compete with national units rather than expanding the renminbi
Capital-control enforcement Identity-linked wallets, regulated exchanges and traceable transfers Private transaction graphs make unauthorized capital movement harder to identify
Domestic financial stability Centralized policy and observable systemic flows Permissionless assets can accelerate currency substitution and capital flight
Information sovereignty Financial data protected from foreign powers but available to Chinese authorities Privacy coins deny privileged visibility to both foreign and domestic authorities
China seeks cross-border opacity from rival powers combined with domestic visibility for the sovereign state. Privacy coins offer opacity from both.

China’s preferred answer is therefore not anonymous international money. It is a state-governed international network in which participating governments replace foreign intermediaries without surrendering their own supervisory access.

The stability of that answer depends on participating states agreeing about who may observe, censor and reverse transactions.

China can construct corridors with Russia, Iran and other partners, but each state enters those corridors with different sanctions exposure, capital controls and security priorities. Western governments are unlikely to join infrastructure designed partly to reduce their financial leverage. Private commodity traders, shipping companies and manufacturers will continue comparing systems according to cost, liquidity, speed and confidentiality.

A state-governed network can become an important alternative without becoming universally neutral.

IX. The Sovereignty–Neutrality Frontier

China’s predicament is not unique. It reveals a structural tension at the centre of digital money.

The stronger the sovereign controls embedded in a currency, the more useful that currency becomes to the issuing state. Programmability can enforce policy. Identity can reduce fraud. Transaction limits can support capital controls. Supervisory access can assist investigations.

But the same properties reduce the currency’s neutrality to outsiders.

A foreign government knows that access may be restricted after a diplomatic rupture. A company knows that payments may be inspected or reversed. A reserve manager knows that the issuer can change rules. A dissident knows that privacy exists at the discretion of an authority whose future conduct cannot be guaranteed.

Conversely, an asset becomes more neutral as no participant can grant itself special powers. Gold is not the liability of another state. Bitcoin has no issuer capable of changing its maximum supply or freezing an address. Privacy coins extend the principle by reducing the informational advantage available to every state.

Neutrality is not binary. It is a frontier along which monetary systems trade sovereign control against equal treatment.

Asset or system Sovereign control Issuer neutrality Transaction confidentiality Current institutional readiness
Digital yuan Very high Low for foreign users because China retains policy privilege Limited user privacy with preserved sovereign traceability High inside approved Chinese and partner infrastructure
Dollar stablecoin Shared among dollar policy, private issuer and regulatory jurisdiction Low Normally low on public ledgers High market liquidity, but issuer and sanctions exposure remain
Gold Low when held directly High Holdings and transfers can be private outside custodial systems Deep reserve tradition, but physical transfer and mobilization are costly
Bitcoin Low at protocol level High Low because the ledger is public Growing institutional infrastructure and liquidity
Privacy coin Low at protocol level Potentially high High when privacy is correctly implemented and used Currently limited by liquidity, custody, legal access and volatility
The more completely a CBDC expresses the sovereignty of its issuer, the less completely it can function as neutral money between sovereigns.

This is the global monetary paradox.

A multipolar world can build multiple sovereign payment blocs. It cannot eliminate the need for a bridge between parties that do not fully trust one another.

That bridge must either be governed by a negotiated institution—or embodied in an asset whose rules do not privilege any participant.

X. The Strange Convergence: Central Banks and Network States

The most unexpected implication is that central banks and network states—institutions at opposite ends of the political spectrum—can converge on similar monetary requirements.

A sanctioned central bank wants reserves that cannot be frozen by a rival government. A network state wants a treasury that cannot be frozen by the territorial state it is attempting to exit.

A state-owned exporter wants strategic trade hidden from foreign intelligence. A digital community wants donors, salaries and internal relationships hidden from political adversaries.

A reserve manager wants an asset that remains usable when custodial relationships fail. A network polity wants capital that remains usable when platforms de-bank it.

Requirement Why a central bank may want it Why a network state may want it
No foreign issuer Reduces sanctions and counterparty exposure Prevents dependence on an external sovereign or corporation
No issuer-level freeze Keeps strategic reserves usable during conflict Keeps the community treasury usable during political exclusion
Confidential settlement Protects reserves, procurement and trade counterparties Protects membership, salaries, donations and internal coordination
Selective auditability Allows internal controls without global disclosure Allows treasury accountability without exposing the entire community
Global transferability Enables settlement beyond correspondent banks Allows a geographically distributed community to transact

The political motivations are different. The central bank seeks to preserve state power. The network state seeks to construct power outside the existing state.

But the capital layer can converge.

This is where sovereign gravity becomes important. Credible, hard-to-seize capital attracts the infrastructure needed to hold, trade, lend, insure and govern it. As infrastructure deepens, the asset becomes more useful. As usefulness grows, the surrounding network gains institutional weight.

The sequence described in From Network Union to Network State depends on that gravity. Identity without capital remains a community. Capital without coordination remains a market. Capital that attracts coordination can become the foundation of a polity.

Central banks and network states do not agree on who should rule. They may nevertheless compete for the same kind of money: capital that remains usable when another sovereign says no.

XI. Could Privacy Coins Become Central-Bank Reserve Assets?

No publicly disclosed central-bank reserve portfolio identified in the sources reviewed includes Monero, Zcash, Ryo or another privacy coin.

The present evidence is more limited—but still significant.

In March 2025, the United States government established a Strategic Bitcoin Reserve capitalized primarily with forfeited bitcoin. This is a federal strategic holding rather than an asset held by the Federal Reserve, but it established the principle that a major government may retain decentralized digital assets for strategic purposes.[40]

In November 2025, the Czech National Bank created a US$1 million test portfolio containing Bitcoin, dollar stablecoins and a tokenized dollar deposit. The bank explicitly stated that the portfolio was experimental and did not form part of its international reserves. Its purpose was to build operational knowledge concerning custody, transactions, security and compliance.[41]

These cases do not demonstrate privacy-coin adoption. They show public institutions moving from theoretical discussion toward direct operational experience with decentralized digital assets.

What Reserve Managers Actually Require

Central-bank reserve managers traditionally balance safety, liquidity and return. Official reserves must remain controlled by and readily available to the monetary authority for foreign payments, intervention or emergency liquidity.[42]

Privacy coins possess several potential reserve-like properties:

Reserve characteristic Potential privacy-coin advantage Present limitation
Issuer neutrality No foreign central bank, corporation or sovereign borrower controls issuance Protocol governance, developer concentration and market structure still create dependencies
Protection from freezing No centralized issuer can blacklist or reissue the asset Exchanges, custodians and conversion points can still be sanctioned
Confidentiality Strategic balances, transfers and counterparties need not be public Reserve managers require secure internal audit and disclosure procedures
Fungibility Units do not carry an easily visible history that divides them into acceptable and unacceptable coins Institutions may still discriminate according to gateway, source or jurisdiction
Cross-border transferability Assets can move without correspondent banks or foreign custodians Market depth remains far below major sovereign currencies and gold
Self-custody A central bank can hold keys without relying on another state Key loss, insider compromise and succession procedures create new operational risks
Predictable issuance Foreign monetary policy cannot discretionarily expand the supply Price volatility complicates valuation and intervention use

The Digital-Gold Comparison

Gold is the closest established example of neutral reserve money.

Physical gold held domestically is not the liability of a foreign government or institution. It can protect against external reserve freezes. The trade-off is mobility: gold kept beyond foreign legal reach becomes harder to mobilize rapidly for international payments or currency intervention.[43]

A mature privacy-preserving digital asset could theoretically offer a different combination. It could be held directly, transferred internationally and settled without publicly revealing the balance, transaction or counterparty.

Today, however, privacy coins remain more volatile than established reserve assets, possess smaller markets, face legal restrictions and lack the custody, derivatives and institutional infrastructure required for large official portfolios.

The strongest reserve thesis is therefore not that central banks are about to replace dollars or gold with privacy coins.

It is that geopolitical fragmentation increases demand for an asset with the following combination:

  • No foreign sovereign issuer.
  • No centralized freezing authority.
  • No publicly visible reserve balance or settlement graph.
  • Strong fungibility.
  • Global digital transferability.
  • Selective disclosure for internal audit and proof.

Very few assets attempt to provide all six.

A Plausible Adoption Sequence

If privacy coins enter public-sector reserve management, adoption is unlikely to begin with large allocations in the liquid foreign-exchange tranche.

  1. Technical experimentation: central banks and finance ministries test custody, proofs, accounting and market access.
  2. Strategic government holdings: states retain seized or acquired assets as long-term stockpiles.
  3. State-linked settlement: approved companies use private assets for commodity, shipping or sanctions-sensitive trade.
  4. Emergency reserves: governments maintain small holdings outside foreign custody as insurance against exclusion.
  5. Investment-tranche allocation: a central bank or sovereign fund adds a limited position after liquidity and infrastructure improve.
  6. Broader reserve recognition: only after market depth, price resilience, custody standards and international convertibility become sufficient.
The reserve case for privacy coins does not begin with secrecy. It begins with neutrality: an asset that remains usable when political alliances, sanctions regimes and foreign custodial relationships fail.

China may resist this development more strongly than many states because privacy coins threaten its capital controls. Yet China also has one of the strongest strategic incentives to reduce dependence on assets and payment channels exposed to American authority.

That contradiction may eventually force Beijing—and other central banks—to distinguish between privacy coins as unrestricted domestic money and privacy-preserving decentralized assets as externally neutral strategic reserves.

XII. The Two-Layer Monetary Internet

The future monetary system is unlikely to produce a total victory for either state-controlled digital currencies or permissionless privacy coins.

It is more likely to divide into two interacting layers.

Layer Likely components Governing principle Probable sphere of strength
State-network layer CBDCs, regulated stablecoins, tokenized bank deposits, institutional wallets and cross-border central-bank platforms Monetary activity remains connected to sovereign law, licensed institutions and enforceable supervision Taxes, salaries, government disbursements, domestic retail payments and regulated banking
Permissionless privacy layer Privacy coins, zero-knowledge payment systems, decentralized exchanges, peer-to-peer settlement and network anonymity Users transact without granting a state or corporate intermediary universal visibility or veto power Sanctions-sensitive trade, capital preservation, confidential commerce and communities requiring political neutrality

The permissionless layer will not exist entirely beyond government reach. Users interact with devices, internet connections, exchanges, merchants and real-world counterparties.

Network observation can also undermine ledger privacy. Research has shown that peer-to-peer transaction broadcasts may expose IP-related and timing information, allowing observers to correlate blockchain activity with network origin.[30]

Governments can regulate commercial gateways, investigate endpoints and prosecute unlawful conduct.

But privacy systems can make universal financial surveillance technically, economically and legally more difficult.

The state-network layer will probably dominate domestic payments for the foreseeable future. The privacy layer becomes most valuable where the cost of political visibility is highest.

Its growth is not guaranteed. Liquidity, usability, legal access and infrastructure will determine which systems survive. But the demand it addresses is structural rather than ideological: counterparties who do not trust one another still require a way to settle.

Ryo Currency: A Prototype for Neutral Network Money

China’s controllable-anonymity model preserves a privileged observer inside the monetary system. Ryo Currency approaches privacy from the opposite direction: confidentiality is the normal condition, while disclosure occurs for a defined purpose.

Ryo currently applies privacy by default through Ring Confidential Transactions, stealth addresses, concealed amounts and a default ring size of 25. It supports view-only wallets and transaction, spend and reserve proofs. It launched without a premine or conventional ICO, while its Cryptonight-GPU design and extended emission were intended to keep distribution accessible through general-purpose graphics hardware.[31][33]

Its roadmap proposes moving from RingCT to Halo 2 zero-knowledge proofs. Ryo.news has also examined a planned high-latency mixnet intended to protect timing, IP relationships and transaction propagation at the network layer.[32]

These distinctions matter because a credible neutral asset requires more than a private ledger. It requires issuer neutrality, fungibility, selective auditability, broad distribution and protection from network-level observation.

Neutral-money requirement Ryo status Editorial assessment
No foreign issuer or issuer-level freeze Current Protocol issuance is not controlled by a state or stablecoin administrator
Privacy by default Current through RingCT architecture Ordinary transactions do not enter an optional transparent pool
Selective disclosure Current View-only wallets and cryptographic proofs support defined audit and verification needs
Broad-based distribution design Current design No premine or ICO and long GPU-oriented emission improve the entry path
Halo 2 zero-knowledge privacy Planned Removes trusted setup and opens development avenues and path to full quantum-resistance
High-latency mixnet Planned Would address metadata risks that ledger privacy alone cannot solve
Governance layer for network polities Planned A move to proof-of-stake consensus will allow for fully private DAOs
Reserve-scale liquidity and custody Not yet present Market depth, institutional custody, legal access and operational resilience require substantial development

Ryo should therefore not be described as an existing central-bank reserve asset or a completed network-state platform.

Its significance is architectural. It combines several properties that neutral digital money would require while making its present limitations visible rather than hiding them.

In the network-state stack, Ryo is intended to occupy the capital layer. In the Three Leviathans framework, it belongs to Network money. In the sovereignty–neutrality frontier, it represents an attempt to maximize protocol neutrality without abandoning targeted proof.

China’s model conceals information until sovereign authority requires access. Ryo’s design seeks to reveal only what is cryptographically necessary to prove validity. That difference separates state-controlled privacy from neutral network money.

Conclusion: Money That Privileges No Sovereign

China wants a monetary system capable of operating beyond Washington’s control.

It does not want a monetary system capable of operating beyond Beijing’s control.

The digital yuan resolves this distinction by creating limited privacy at the user level while retaining traceability within the sovereign institutional structure.

MBridge and the e-CNY’s international infrastructure extend the same logic across borders. They can reduce reliance on Western-controlled settlement without abandoning central-bank issuance, approved participation or national authority.

Russia and Iran reveal the attraction and the limit of that model. Both benefit from payment channels that are harder for the United States to interrupt. Neither government has shown an equivalent desire to make domestic financial activity invisible to itself.

Privacy coins refuse that division.

They do not provide one cryptographic standard for governments and another for citizens. The same protocol protects the exporter and the dissident, the central bank and the network community, the sanctioned state and the person escaping its capital controls.

That neutrality creates genuine regulatory problems. It can conceal criminal activity, capital flight and sanctions evasion. It can also protect commercial secrets, lawful association, strategic reserves and human autonomy.

The mistake is to treat this only as a conflict between privacy and law enforcement.

It is also a conflict between two architectures of sovereignty.

The state network begins with territory, recognition and law, then extends authority into identity, capital and coordination.

The network state begins with identity, capital and coordination, then attempts to acquire territory and recognition.

Both require money. Both require reserves. Both require settlement that remains functional when an adversary attempts to exclude them.

This is the strange convergence at the centre of the article.

The digital yuan is the State Leviathan perfected: money whose code strengthens sovereign power.

Privacy coins are an expression of the Network Leviathan: money whose code limits every sovereign’s privileged access.

No privacy coin presently has the liquidity, custody infrastructure, legal recognition or price stability required to displace major reserve assets. That limitation is decisive and should not be romanticized.

But reserve systems evolve when their political assumptions fail.

The freezing of sovereign reserves, sanctions against exchanges, the surveillance of public ledgers and the fragmentation of payment systems all increase the value of assets that are not liabilities of another state.

Gold supplied that neutrality to an earlier monetary order. Bitcoin supplied issuer independence to the first generation of decentralized digital money. Privacy-preserving systems add the missing property of confidential settlement.

Neutral money is not money that no state uses. It is money within which no state can grant itself a superior position.

China’s contradiction will not be resolved by choosing between the dollar and the yuan. It will be resolved by whether the emerging world of monetary blocs can function without a settlement asset outside every bloc.

The state-network layer will continue to process taxes, salaries, regulated banking and domestic commerce.

The permissionless privacy layer will grow wherever the cost of political visibility exceeds the value of sovereign supervision.

Its first large users may be citizens escaping unstable currencies, companies protecting counterparties and sanctioned states defending trade.

Its later users may include public institutions that once regarded privacy coins only as a threat.

That outcome is not inevitable. Privacy currencies must still solve liquidity, custody, governance, usability and institutional access. Projects that fail to build durable networks will remain marginal regardless of the quality of their cryptography.

But the direction of the monetary problem is now visible.

China is building money sovereign enough to resist Washington. The next monetary order may require money neutral enough to resist everyone.

References

  1. Reuters: China steps up cryptocurrency restrictions and prohibits unauthorized offshore yuan-linked stablecoins, February 6, 2026.
  2. State Council of the People’s Republic of China: Digital RMB transactions exceed 14.2 trillion yuan, October 29, 2025; see also Reuters: China broadens the digital yuan’s domestic and cross-border footprint, May 30, 2026.
  3. Xinhua and the Central Commission for Discipline Inspection: Xi Jinping calls for accelerated blockchain innovation, October 25, 2019.
  4. Chen Chun: Consortium-blockchain technology and the regulatory challenges of blockchain, 2019; see also First Financial interview on strengthening blockchain regulatory technology.
  5. Cai Weide, Yu Lian, Wang Rong, Liu Na and Deng Enyan: Blockchain Application Development Techniques, Journal of Software, 2017; see also Cai Weide: Real-Time Automated Regulatory Reporting System Based on Blockchain.
  6. Wang Yongli: The sovereign and legal foundations of modern credit money, February 26, 2026.
  7. Balaji Srinivasan: The Network State in One Sentence; see also On Network States.
  8. Wei Dai: B-Money, November 1998.
  9. Yao Qian: Central-bank digital-currency design and controllable anonymity, International Telecommunication Union, 2018.
  10. People’s Bank of China: E-CNY—Main Objectives, Guiding Principles and Inclusion Considerations, published by the Bank for International Settlements.
  11. International Monetary Fund: People’s Republic of China—2025 Article IV Consultation, Informational Annex, 2026; see also the full staff report.
  12. Maggie R. Hu, Adrian D. Lee and Tālis J. Putniņš: Evading Capital Controls via Cryptocurrencies—Evidence from China, working paper posted May 21, 2026.
  13. Fang Binxing, Peng Zou and Shibing Zhu: Research on Cyberspace Sovereignty, Chinese Academy of Engineering, 2016.
  14. Cyberspace Administration of China: Sovereignty in Cyberspace—Theory and Practice, Version 2.0, November 2020.
  15. Zcash: Private Shielded and Transparent Transactions; see also Zcash: The Difference Between Shielded and Transparent Zcash, ZIP 316: Unified Addresses and Unified Viewing Keys, and Draft ZIP 311: Zcash Payment Disclosures.
  16. Vitalik Buterin, Ameen Soleimani, Jacob Illum, Matthias Nadler and Fabian Schär: Blockchain Privacy and Regulatory Compliance—Towards a Practical Equilibrium.
  17. Monero: Privacy technologies and privacy by default; see also the Monero technical specifications.
  18. Financial Action Task Force: Updated Guidance for a Risk-Based Approach to Virtual Assets and Virtual Asset Service Providers; see also Regulation (EU) 2024/1624, Article 79.
  19. David Chaum, Christian Grothoff and Thomas Moser: How to Issue a Central Bank Digital Currency.
  20. Geoffrey Goodell, Hazem Danny Al-Nakib and Paolo Tasca: A Digital Currency Architecture for Privacy and Owner-Custodianship.
  21. Alex Gladstein: Why Bitcoin Is Freedom Money, Journal of Democracy, October 2025.
  22. Reuters: Russia is using Bitcoin and other digital assets in foreign trade, December 25, 2024.
  23. Reuters: Russia uses cryptocurrency within parts of its oil trade with China and India, March 14, 2025.
  24. Reuters: Russian official calls for domestic stablecoins after Tether freezes Russia-linked wallets, April 16, 2025.
  25. US Department of the Treasury: Treasury sanctions Nobitex and other Iranian digital-asset exchanges, June 2, 2026.
  26. Reuters: China promotes the digital yuan within a multipolar international currency system, June 18, 2025.
  27. Bank for International Settlements: Project mBridge—Connecting Economies Through CBDC.
  28. Reuters: China-led cross-border digital-currency platform surpasses US$55 billion in transactions, January 16, 2026.
  29. State Council Information Office: China launches the international operations centre for the digital RMB, September 26, 2025.
  30. Alex Biryukov, Dmitry Khovratovich and Ivan Pustogarov: Deanonymisation of Clients in the Bitcoin P2P Network.
  31. Ryo Currency official website: Current privacy architecture, launch and roadmap; see also Cryptonight-GPU and Fair GPU Mining and the Ryo Currency source-code repository.
  32. Ryo.news: Enhancing Privacy With Halo 2 and a High-Latency Mixnet; see also Ryo Currency’s High-Latency Mixnet vs. Tor and VPNs.
  33. Ryo Wallet Atom: View-Only Wallet Support; see also the Ryo Wallet RPC API: Transaction, Spend and Reserve Proofs.
  34. Al Jazeera: How the United States and Iran Are Playing a Crypto Cat-and-Mouse Game Over Sanctions, April 29, 2026; see also the US Treasury action against Iranian digital-asset infrastructure.
  35. Bit24: Monero Purchase and Sale Services; OK Exchange: Monero Market; and Tabdeal: XMR Listed Among Tradable Proof-of-Work Cryptocurrencies.
  36. US Treasury OFAC FAQ 1249: Sanctions Risk of Payments for Passage Through the Strait of Hormuz.
  37. Ryo.news: Strait of Crypto—Ceasefire, the Silver-Oil Ratio and the Quiet Rise of Privacy Money, April 8, 2026.
  38. CoinMarketCap: Zcash market coverage during the Iran ceasefire, April 2026.
  39. Iran International: Iran’s Central Bank Says Hormuz Tolls Were Paid in Cash Rather Than Cryptocurrency, April 23, 2026.
  40. The White House: Establishment of the Strategic Bitcoin Reserve and United States Digital Asset Stockpile, March 6, 2025.
  41. Czech National Bank: First Test Portfolio of Digital Assets at the CNB, November 13, 2025; see also the CNB Digital Assets Pilot.
  42. Bank for International Settlements: Central-Bank Reserve Management and Services; see also the IMF Guidelines for Foreign Exchange Reserve Management.
  43. International Monetary Fund: Gold in Central Bank Reserves—Strategic Considerations, Market Risks and Practical Guidance, July 2026.

Imagined Communities 2.0: How Digital Networks Are Reshaping National Identity

Part one of an eight‑part series on building network states with Ryo Currency.

In 1983, political scientist Benedict Anderson proposed a radical idea: nations are not primordial or eternal. They are “imagined communities” — socially constructed entities held together not by face‑to‑face interaction, but by shared stories, symbols, and media. A nation exists because its members imagine themselves as part of a collective, bound by common language, culture, or history, even if they will never meet the majority of their compatriots [1].

For centuries, the technologies of the printing press, mass literacy, and broadcast media shaped the boundaries of these imaginations. The “print capitalism” of the 18th and 19th centuries created standardized vernacular languages, enabling millions to envision themselves as French, German, or American. The nation‑state, as we know it, is a product of this industrial‑era imagination.

Today, the infrastructure of imagination has fundamentally shifted. The printing press has given way to the global, interconnected, algorithmic network. And just as the rise of print capitalism enabled the birth of the modern nation‑state, the rise of digital networks is enabling the birth of its successor: the network state.

This article, the first in our eight‑part series on building network states, explores this transformation. We will examine how digital networks forge new types of communities, what this means for sovereignty, and how a community can begin its journey from a scattered online group to a self‑governing entity.


I. The Original Imagined Community

Anderson’s framework is essential because it demystifies the nation. It shows that the deep emotional attachment people have to their country is not natural, but is the product of specific historical and technological conditions. He identified three paradoxes of nationalism that any new form of political community must also contend with [1]:

  1. Modernity vs. Antiquity: Nations are historically modern constructs, yet they present themselves as ancient, stretching back into a timeless past.
  2. Universality vs. Particularity: Nationalism claims to be a universal ideal (every people deserves its own state), but each nation is defined by its unique, particular characteristics.
  3. Power vs. Vulnerability: The nation is imagined as sovereign and powerful, yet its boundaries are inherently limited and its existence is perpetually fragile.

For a network state—a community bound by digital ties rather than contiguous territory—to succeed, it must solve these same paradoxes. It must create a shared origin story (its “antiquity”), define its unique values and culture (its “particularity”), and build resilient systems that can withstand the inherent vulnerabilities of the digital realm (its “power”).

The key innovation of the nation‑state was the ability to create a mass, anonymous, horizontally‑organized community through shared media. The newspaper, for Anderson, was the archetypal artifact: consumed in parallel by thousands of people who would never meet, it created a collective ritual and a shared sense of time [1]. Today, the social feed, the decentralized forum, the DAO governance vote, and the shared open‑source codebase serve a similar function. They are the rituals of the digital age, creating a shared experience that binds individuals across continents into a single, coherent “we.”


II. From Print to Protocol: The Digital Infrastructure of Identity

If Anderson showed that nations were products of industrial‑era media, then the internet represents a new infrastructural condition—one that is fundamentally re‑territorializing identity. Where print capitalism created “homogeneous, empty time”—a shared calendar and narrative—digital capitalism creates “simultaneous, algorithmic space.” A software developer in Bangalore, a privacy activist in Berlin, and a digital artist in Buenos Aires can share a more coherent and meaningful political identity with each other than they do with their territorial neighbors. Their identity is defined not by where they are, but by which networks they participate in, which values they share, and which digital assets they hold.

This shift from physical to digital infrastructure is not merely a change of medium; it is a change in the very ontology of collective identity. In the digital age, identity becomes enforceable through protocols, membership rules, treasury systems, and governance processes. A community’s shared imagination becomes a set of technical constraints: who holds the keys to the treasury, what rules govern membership, how decisions are ratified. This is the bridge from “imagined community” to “network state”—the transformation of a shared idea into a self‑enforcing system.


III. The Network Union: The Seed of Sovereignty

Before a community can become a network state, it must first become a network union [2]. Drawing on the framework established in the previous series’ final article, “From Network Union to Network State,” the network union is the seed stage of digital sovereignty [3]. It is a wholly digital entity, organized for a specific purpose—the equivalent of a startup in the world of nations.

A concrete example helps ground this abstract concept. Consider a hypothetical “Ryo Dev Collective” — a network union of privacy‑focused developers, cryptographers, and security auditors. Their shared identity is a commitment to financial privacy and censorship‑resistant infrastructure. Their initial coordination happens on encrypted forums and Signal groups. They create a shared treasury denominated in a neutral asset to fund open‑source development. They adopt a rough consensus governance model for technical decisions. They do not yet claim sovereignty, but they have all the prerequisites: a clear mission, a membership, a treasury, and a decision‑making process. They are a network union in embryo [2].

The transition from a casual online group to a network union is marked by three critical milestones:

  • A shared treasury pooled in a neutral, unfreezable asset.
  • A formal governance mechanism (e.g., rough consensus or on‑chain voting).
  • A public declaration of principles articulating shared values, mission, and membership criteria. Membership itself must be verifiable—through contribution history, reputation systems, proof‑of‑personhood, or economic stake—to prevent sybil attacks and maintain cohesion.

IV. The Stack: How Identity Becomes Infrastructure

To build a network state, a community must move from imagination to infrastructure. The most effective way to conceptualize this is through the Network State Stack—a layered model that transforms a shared identity into a sovereign system.

The Network State Stack

  1. Identity Layer: The shared narrative, culture, values, and membership criteria.
  2. Capital Layer: The economic infrastructure—a neutral, private, and unfreezable currency that serves as treasury and medium of exchange.
  3. Coordination Layer: Governance mechanisms—DAOs, smart contracts, and dispute resolution systems—that allow collective decision‑making.
  4. Territorial Layer: The “archipelago”—physical properties, digital spaces, and infrastructure the community acquires and networks together.
  5. Recognition Layer: Diplomatic recognition from legacy states or other network states, establishing the community as a legitimate actor.

Each layer builds upon the one below it. A community cannot build a robust capital layer without a coherent identity, nor coordinate without a shared treasury, nor acquire territory without coordination. Recognition, the final layer, requires all of the above.


V. From Imagination to Implementation: A Walkthrough

To make this concrete, let’s walk through how a hypothetical community—say, a global collective of independent journalists and digital rights advocates—could begin implementing the Stack.

  1. Identity Layer: They articulate a clear mission: “to defend freedom of information and protect whistleblowers through secure publishing infrastructure.” They adopt a public manifesto and establish a membership process based on contributions to the field.
  2. Capital Layer: They seed a treasury with a neutral, private asset. Because they operate in adversarial jurisdictions, they choose a currency that cannot be frozen by any single state and that shields transaction details. Ryo Currency is a strong candidate for this role, but they could also diversify across multiple privacy‑focused assets.
  3. Coordination Layer: They implement a DAO using smart contracts to manage treasury allocations for grants, legal defense, and infrastructure. Disputes are resolved via a decentralized arbitration protocol like Kleros.
  4. Territorial Layer: They begin acquiring physical “embassies”—co‑working spaces in crypto‑friendly jurisdictions (e.g., Lugano, Zug) that serve as safe gathering points and operational hubs. They also invest in secure server infrastructure and mesh networks.
  5. Recognition Layer: They seek a “bootstrap recognizer”—a small nation or special economic zone willing to grant legal status to the DAO in exchange for tax revenue or technological collaboration. This gives them a foothold in the legacy system while they continue to build.

VI. What Could Go Wrong? The Vulnerabilities of Digital Identity

Building a new form of political community is not without profound risks. A credible guide to network states must confront these challenges directly. At the Identity Layer, the risks are particularly acute:

  • Sybil Attacks and Identity Fragmentation: How do you prevent a single person from masquerading as thousands to subvert governance? Robust identity systems—proof‑of‑personhood, reputation, or economic stake—are essential [4].
  • Capture by Algorithms: A community built on Twitter or Discord is not sovereign; it is a tenant. The path to sovereignty requires moving from rented spaces to self‑owned infrastructure.
  • Co‑optation of Narrative: Hostile states or adversaries may seek to co‑opt a community’s identity, spreading disinformation or creating splinter groups. A network state must have robust information defense.
  • The “Cool Kids” Problem: Early digital communities often suffer from a crisis of scale. Intimate, high‑trust culture can be diluted, and governance mechanisms (DAOs, tokens) can themselves become vectors for plutocracy or capture [4].

Successfully navigating these vulnerabilities requires more than technology. It requires a conscious, iterative, and resilient community that can learn, adapt, and enforce its own norms. This is the fundamental challenge of the Identity Layer: transforming an imagined community into a self‑governing one.


VII. The Role of Neutral Assets

In the industrial age, the national currency was a powerful symbol of sovereignty and a tool for imagining economic unity. In the digital age, a network state’s currency plays a similar but more profound role. Because a network state is not territorially contiguous, its currency is not merely a symbol; it is the primary mechanism of membership and coordination. For a currency to serve this function, it must meet specific criteria [5]:

  • Unfreezable — no single state can block the community’s treasury.
  • Private by default — economic activity is shielded from adversarial surveillance.
  • Decentralized and uncapturable — no single point of failure or co‑optable class.
  • Fairly distributed — no permanent, co‑optable oligarchy.
  • Liquid and jurisdictionally neutral — sufficient market depth without control by any single exchange or jurisdiction.

These criteria are the direct technical expression of the need for an imagined community to become a sovereign entity in a hostile world. Without an unfreezable treasury, the community’s capital is at the mercy of legacy states. Without privacy, its members are exposed. Without decentralization, the community is captured.

Ryo Currency is designed to meet these requirements: its Halo 2 ZK‑proofs enable scalable private transactions; its upcoming mixnet provides transaction‑level anonymity; its ASIC‑resistant, fairly‑launched distribution avoids a co‑optable miner class; and its roadmap to proof‑of‑stake and native DAO governance aligns with the needs of a self‑governing community [6]. It is not the only possible choice, but it is one architected to meet the exact requirements of a network state’s capital layer.


VIII. The Path Forward

The journey to a network state begins with turning shared imagination into shared infrastructure. For a community ready to start, the immediate steps are:

  1. Articulate a clear, shared mission. Define your purpose, values, and the problem you exist to solve.
  2. Establish a public record. Create a manifesto, a website, a forum. Make your collective imagination tangible.
  3. Choose a neutral treasury asset. Pool resources in a cryptocurrency that cannot be frozen or surveilled. The principle—unfreezable, private, decentralized—matters more than the specific asset.
  4. Adopt a governance process. Even an informal one. How will decisions be made? How will disputes be resolved?

The next article in this series, “The Bitcoin Magnet,” will explore the Capital Layer in depth, examining how network assets create economic gravity, concentrating talent and resources around shared digital polities. It will draw on the work of Sunil Aggarwal and his forthcoming analysis of how digital scarcity creates the conditions for the emergence of new, non‑territorial economies.

We are at the beginning of a historic transformation. The infrastructure for imagining community has changed, and with it, the possibilities for human governance. The path is open. It is now up to communities to imagine themselves into being, and then, step by step, to build.


References:
[1] Anderson, Benedict. Imagined Communities: Reflections on the Origin and Spread of Nationalism. Verso, 1983. https://www.versobooks.com/books/2158-imagined-communities
[2] Srinivasan, Balaji. The Network State. 2022. Chapter 5, Section 5.3.1. https://thenetworkstate.com/chapter5#section5-3
[3] Ryo News. “From Network Union to Network State: How Ryo Currency Powers the Digital Nations of Tomorrow.” March 19, 2026. https://ryo.news/from-network-union-to-network-state-how-ryo-currency-powers-the-digital-nations-of-tomorrow/
[4] Buterin, Vitalik. “On Collusion.” Ethereum Blog, 2019. https://vitalik.ca/general/2017/08/27/collusion.html
[5] Ryo News. “When Institutions Fail: Balaji Srinivasan, Network States, and the Architecture of Economic Sovereignty.” March 17, 2026. https://ryo.news/when-institutions-fail-balaji-srinivasan-network-states-and-the-architecture-of-economic-sovereignty/
[6] Ryo Currency. Official FAQ & Roadmap. https://ryo-currency.com/#faq-4


 

📘 Executive Summary

The series: Over seven articles, we have traced the potential collapse of the free‑floating fiat system (1971–2026?), the rise of digital monetary blocs, and the emergence of the Network as a new Leviathan—a force as transformative as God in the 1800s and the State in the 1900s. The catalyst could be the Yuan Ultimatum: Iran’s demand that oil pass through the Strait of Hormuz only if priced in yuan, fracturing the 1974 petrodollar agreement. This could trigger a systemic collapse (The End of Free-Floating Fiat) as the debt supercycle and weaponization of finance end trust in state money.

The human stakes are laid bare in The Human Chokepoint: dissidents, refugees, and low‑score citizens may need privacy‑preserving digital cash to survive in a world of programmable exclusion. Intellectual validation came from the convergence of Sergei Glazyev and Ray Dalio (The Prophet and the Hedge Fund King): neutral assets must be unfreezable, private, decentralized, and fairly distributed.

When Institutions Fail mapped four scenarios—bloc implementation, state fracture, total collapse, and network state emergence—arguing that cryptocurrency could become the backup system when all else breaks. God, State, and Network introduced the three Leviathans and showed how secular and religious communities can encode their values into DAOs on Ryo.

This final article synthesises the series into a practical roadmap. It argues that Ryo Currency—with its forthcoming Halo 2 zero‑knowledge proofs, imminent high‑latency mixnet, proof‑of‑stake transition, and native DAO governance—is positioned to be the only cryptocurrency architected for every stage of the network state journey:

  • Network union: a digital community with private treasury, ZK‑proof membership, and collective action.
  • Network archipelago: crowdfunding physical nodes, smart‑property access, and private coordination.
  • Network state: on‑chain census, unfreezable treasury, private governance, and diplomatic recognition via a bootstrap recognizer.

The article explores a full spectrum of governance models: pure free‑market DAOs (with Kleros arbitration), ideological DAOs (Communist, Corporate, Nationalist, Transhumanist, Anarcho‑Primitivist, Green), and religious DAOs (Hindu, Catholic, Islamic, Sikh, Buddhist, Jewish, Orthodox, Confucian)—each with its adherent count and existing institutional structures. It shows how an individual could belong to multiple DAOs simultaneously (e.g., a Kurdistan DAO, an Islamic DAO, a corporate DAO, and local micro‑DAOs) using the same Ryo wallet, with privacy preserved across all interactions.

The Recentralized Center is introduced as a vision of thousands of opt‑in network states, layered from foundation to community to affinity to local governance. Defense could shift from standing armies to cryptographic enforcement; policing might rely on smart contracts, arbitration, and local security DAOs; infrastructure could be sourced from legacy states or crowdfunded privately. Ryo is envisioned as the neutral settlement layer, enabling diverse polities to coexist and transact peacefully.

The verdict: The era of free‑floating fiat may be ending. The era of network states could be beginning. Ryo is designed to provide the missing piece: money that is private, sovereign, and governable by default. The path from network union to network state is open. The only question is who will walk it.

From Network Union to Network State: How Ryo Currency Powers the Digital Nations of Tomorrow

“A network state is a highly aligned online community with a capacity for collective action that crowdfunds territory around the world and eventually gains diplomatic recognition from pre‑existing states.” — Balaji Srinivasan
⚡ MARCH 18, 2026 – INSTITUTIONAL COLLAPSE ACCELERATES: UN officials have admitted the United Nations is on the brink of complete financial collapse as member states refuse to pay their dues. “We face a real danger of running out of money,” they warn. The institution created after World War II to maintain global order is now itself a casualty of the order’s dissolution. This is not an isolated event—it is the logical conclusion of the forces traced throughout this series.

I. Introduction: The Vision Realized

Over the past week, we have traced the collapse of the free‑floating fiat system, the rise of digital blocs, and the emergence of the Network as the new Leviathan. In God, State, and Network, we examined how secular and religious communities alike can build DAOs on Ryo—private, fungible, and governable by default. Now we turn to the practical path: how a digital community becomes a sovereign network state, and why Ryo’s architecture makes it the ideal currency for every stage of that journey.

Balaji Srinivasan’s The Network State provides the roadmap. Ryo Currency provides the engine. This article explores how the two converge—how privacy‑preserving digital cash, fair distribution, and DAO‑native governance make Ryo the indispensable foundation for startup societies, from the first network union to the diplomatically recognized network state.

II. From Nation States to Network States: Srinivasan’s Framework

2.1 What Is a Network State?

Srinivasan defines a network state as “a highly aligned online community with a capacity for collective action that crowdfunds territory around the world and eventually gains diplomatic recognition from pre‑existing states” [2]. Its core components include a social network with a moral innovation, a sense of national consciousness, a recognized founder, an integrated cryptocurrency, an archipelago of crowdfunded physical territories, a virtual capital, and an on‑chain census that proves its scale [3].

2.2 The Network State System vs. The Nation State System

Feature Nation State System Network State System
Primary Physical first Digital first
Territory Contiguous land Archipelago of crowdfunded properties
Citizenship Birth‑based (jus sanguinis) Consent‑based (opt‑in subscription)
Sovereignty Military enforcement Cryptographic enforcement
Governance Paper laws, judiciary Smart contracts, DAOs
Census Every 10 years, paper‑based Real‑time, on‑chain, verifiable
Money Fiat currency (State‑controlled) Cryptocurrency (Network‑native)

The network state system assumes “digital first”—all nontrivial human‑created events start in the cloud and are then “printed” into the physical world [4]. Ryo’s architecture is built for this reality.

2.3 China vs. The Internet: A Framework for Understanding State Survival

Srinivasan draws a crucial distinction in understanding the future of nations: “Only China and crypto take the internet seriously, but in totally polar ways. They have the Great Firewall and the Blockchain respectively. These are very different types of fortifications that both treat the digital realm as something to be defended, walled off, and protected” [5]. China’s strategy is vertical integration of digital society—making citizens use only Chinese apps and restricting access to global platforms. This is digital sovereignty through control. Cryptocurrency’s strategy is horizontal—making software so secure it can run on every computer in the world, creating sovereignty through cryptography.

This framework raises a profound question: would a state like China be forced to enter the network state arena? The answer is that China is already creating its own version of a network state—but one built on surveillance, control, and the digital yuan rather than privacy, consent, and neutral money. The question is which model will prove more resilient when the old order collapses.

How would a reclusive, highly isolated state such as North Korea navigate the emergence of digital blocs and network states? The academic literature suggests that even economically strained regimes can survive through what scholars call “changing in order to stand still”—minimalist adaptation strategies that preserve core power structures [6]. North Korea’s extreme economic isolation and its parallel development of a domestic digital infrastructure (intranet, mobile payments, and a nascent cryptocurrency awareness) could, paradoxically, insulate it from the immediate shocks of fiat currency collapse. The regime might continue to function through barter, gold, and its own won while selectively engaging with digital bloc economies—for instance, through limited trade with China’s digital yuan sphere. Similarly, Turkmenistan, with its natural gas exports and tightly controlled economy, could navigate the transition by pegging its currency to a basket of digital assets or by striking bilateral deals with one of the emerging blocs. For both states, the emergence of network states does not necessarily imply collapse; it could instead create new opportunities for diplomatic and economic hedging—provided the ruling elites can manage the information flows and maintain domestic control. In a worst‑case scenario—a government collapse in Pyongyang—the humanitarian and security consequences would be severe (loose nuclear materials, refugee flows) [7], and network states could then emerge as lifeboats for populations left without institutions. But that is only one of several possible futures.

III. The Technology Stack: What Network States Need

3.1 Currency Requirements for Network States

  • Unfreezable: No single state can seize the treasury (Glazyev’s requirement) [8].
  • Private by default: Community economic activity must be invisible to rivals and hostile states (Dalio’s requirement) [9].
  • Decentralized and uncapturable: No single point of failure; resistant to ASIC/botnet centralization [10].
  • Fairly distributed: No insider class that can be coerced; no premine, no ICO, no venture capital control.
  • Governable: Native support for on‑chain voting, treasury management, and DAO governance.

3.2 Why Existing Cryptocurrencies Fall Short

Not all cryptocurrencies are created equal. For a network state—a community that must survive in a world of hostile surveillance states, algorithmic enforcement, and financial warfare—the choice of monetary asset is existential. Here is why the most prominent cryptocurrencies fail to meet the requirements outlined above.

Bitcoin pioneered the concept of decentralized, censorship‑resistant money. But its transparency is a fatal flaw for network states. Every transaction is permanently visible on a public ledger. As Ray Dalio noted, Bitcoin “is not going to be a reserve currency for major countries because it can be tracked” [9]. Blockchain analytics firms have built multi‑billion dollar businesses tracing Bitcoin flows, linking addresses to identities, and flagging “tainted” coins [11]. For a dissident, this transparency can be deadly. For a religious community, it reveals who is donating to which causes, exposing believers to persecution. Furthermore, while Bitcoin began with CPU‑friendly mining, it has long since succumbed to ASIC domination. The majority of hash power is now concentrated in the hands of a few large manufacturers and mining pools, creating a centralization risk that violates the “decentralized and uncapturable” requirement. Bitcoin has no native governance mechanism—it changes through “rough consensus,” a process that is opaque and easily captured by entrenched interests.

Ethereum introduced smart contracts and programmability, but its ledger is equally transparent. Every DeFi transaction, every DAO vote, every treasury movement is visible to anyone with an internet connection. For a network state seeking privacy, this is unacceptable. Ethereum’s initial distribution was heavily concentrated through a premine and ICO, creating an insider class that can be—and has been—coerced by regulators. While Ethereum has transitioned to proof‑of‑stake, its validator set shows worrying trends toward centralization, with a few entities controlling a significant portion of staked ETH. Its governance remains off‑chain and opaque, subject to the same “core developer” dynamics that plague Bitcoin.

Zcash was the first major privacy cryptocurrency to deploy zero‑knowledge proofs, and it has resolved the trusted setup issue with its transition to Halo 2—the same next‑generation ZK‑proof technology that Ryo is adopting. Zcash offers users the choice between transparent and shielded transactions, and for many individuals and use cases, this optional privacy model provides exactly the right balance. A network state could, in principle, be built on Zcash. The key difference is one of design philosophy: Zcash’s privacy is optional, while Ryo’s is default. For a network state that requires absolute opacity—where the very fact of governance activity, treasury movements, or membership patterns must be hidden from adversaries—default privacy eliminates the signal that “something important is happening.” For communities that face existential threats from surveillance, Ryo’s architecture provides an additional layer of security. Both are viable; Ryo is for those who want to take privacy to the next level.

Monero is the dominant privacy cryptocurrency and has pioneered many important privacy technologies. Its upcoming FCMP++ (Full‑Chain Membership Proofs) upgrade represents a genuine advancement. However, Monero’s history and architecture present concerns for network states. Monero’s RandomX algorithm is designed for CPU mining, which in theory promotes decentralization. In practice, it has made Monero the preferred currency for cryptojacking—the unauthorized use of other people’s computers to mine cryptocurrency. As detailed in The Human Chokepoint, events like Operation EndGame and the Stary Dobry case highlight how botnet operators have mined millions of dollars worth of Monero using compromised devices [12]. A significant portion of Monero’s circulating supply has been mined by criminals, meaning that any network state using Monero would be transacting in coins with a history of criminal provenance.

More importantly, Monero remains on proof‑of‑work with no native governance layer. While its community is passionate, there is no on‑chain mechanism for voting on budgets, electing leaders, or managing a treasury. For a network state, this is a critical limitation. Monero could serve admirably as a base‑layer privacy tool for individuals, but for a community that must govern itself, make collective decisions, and manage a sovereign treasury, an asset with native DAO capabilities is essential. Ryo’s roadmap includes precisely this: a transition to proof‑of‑stake with integrated DAO governance, enabling network states to manage their affairs entirely on‑chain.

3.3 Ryo’s Architecture for Network States

  • Privacy by default: Unlike Zcash’s optional privacy, Ryo’s Halo 2 ZK‑proofs make every transaction private—no signal, no two‑tier system [13]. For network states, this means adversaries cannot distinguish between treasury movements, governance votes, or ordinary transactions.
  • Halo 2 zero‑knowledge proofs: Eliminate trusted setup, provide mathematically perfect privacy [14].
  • High‑latency mixnet: Obfuscates network‑layer metadata—IP addresses, timing patterns, connection logs. Prevents traffic analysis even if on‑chain privacy is perfect [15].
  • Cryptonight‑GPU mining: ASIC‑resistant, botnet‑resistant; ensures no single entity can dominate the network [16].
  • Fair distribution: No premine, no ICO, 8.79 million pre‑mined coins burned at launch. No insider class that can be coerced [17].
  • Proof‑of‑stake transition and DAO integration: Enables native on‑chain governance. Staking becomes the basis for citizenship, voting rights, and treasury management [18].

IV. The Network Union: Building Digital Community on Ryo

4.1 What Is a Network Union?

Srinivasan: “A social graph organized in a tree‑like structure with a leader, a purpose, a crypto‑based financial and messaging system, and a daily call‑to‑action” [19]. Unlike a social network, it has a purpose and engages in collective action.

4.2 How Ryo Powers the Network Union

  • Private treasury: Union funds accumulate through member contributions; Ryo’s privacy hides treasury size and individual donations from adversaries.
  • ZK‑proof membership: Members prove they belong without revealing identity—essential in hostile jurisdictions.
  • Micro‑transactions for bounties: Reward contributions (writing, coding, organizing) with private, instant payments.

Example from God, State, and Network: Maria’s Catholic DAO uses Ryo for tithing, voting, and treasury allocation—all private, all on‑chain.

4.3 Public Displays of Alignment

Srinivasan’s concept: network unions must show the world they can coordinate [20]. Ryo enables transparent (to members) treasury management and private‑but‑verifiable collective actions—e.g., a keto‑kosher union crowdfunds a restaurant: the world sees that a restaurant was funded; only members see who funded it.

V. The Network Archipelago: Crowdfunding Physical Territory

5.1 What Is a Network Archipelago?

A network union that begins acquiring and networking physical properties around the world [21]. Properties are linked digitally; members move between nodes, creating a global diaspora of aligned individuals.

5.2 How Ryo Enables the Network Archipelago

  • Cross‑border settlement: Members in different jurisdictions pool funds to acquire property. Ryo’s privacy hides the full extent of the archipelago from hostile states.
  • Smart property access: Ryo‑based credentials unlock doors, access co‑working spaces, verify residency. The mixnet prevents correlation of access patterns.
  • Proof‑of‑location: Future ZK‑proofs could allow members to prove they are in a node without revealing which node.
  • Crowdfunding coordination: Ryo’s DAO tools enable transparent voting on acquisitions, budgets, and access.

Example: The Keto Kosher Archipelago—10,000 members crowdfund 50 apartments in 20 cities, each with keto‑friendly kitchens and gyms. Members book stays using Ryo; the DAO votes on new acquisitions and budgets.

VI. The Network State: Diplomatic Recognition and Sovereignty

6.1 What Is a Network State?

A network archipelago that gains diplomatic recognition from at least one legacy state [22]. Recognized as a legitimate polity; can issue passports, sign treaties, join international organizations.

6.2 How Ryo Supports the Network State

  • On‑chain census: Ryo’s blockchain provides a real‑time, cryptographically verifiable census of citizens, income, and real‑estate footprint—the “proof of scale” needed for recognition [23].
  • Unfreezable treasury: The state’s treasury is held in Ryo—no single state can freeze it (Glazyev’s requirement) [8].
  • Private governance: Citizens vote on budgets, laws, and leaders using Ryo’s privacy features; no one can see how individuals voted, preventing coercion.
  • Sovereign identity: Citizens hold Ryo‑based digital passports (e.g., via ENS). They can prove citizenship without revealing physical location.

6.3 The Bootstrap Recognizer

Srinivasan’s term for the first government to recognise a network state [24]. This initial recognition is the critical bridge between a digital community and the legacy international order—it provides legitimacy, access to physical territory, and a platform for further diplomatic relations.

Who might serve as a bootstrap recognizer? The most plausible candidates are small nations seeking economic diversification and a forward‑looking image. El Salvador’s recognition of Bitcoin as legal tender in 2021 is the archetypal precedent. Other examples could include:

  • Small island nations (Tuvalu, Palau, Malta) that depend on digital services and could benefit from hosting network state headquarters.
  • Special economic zones like the Dubai International Financial Centre or Hong Kong (before its absorption into China’s digital yuan system) that already operate under separate legal frameworks.
  • Cities with crypto‑friendly mayors (Miami, Lugano, Zug) that could grant limited territorial recognition to network states within their boundaries.
  • Indigenous nations with existing sovereignty claims, such as some Native American tribes, that could recognise network states as a form of economic development.

The recognition process would involve a bilateral agreement encoded in smart contracts. The bootstrap recognizer would grant the network state limited territorial jurisdiction (e.g., a plot of land for an embassy or a co‑working hub), diplomatic privileges, and legal recognition of its digital passports. In return, the network state would bring economic activity, technological expertise, and a share of its treasury (in Ryo) to the recognizer. The agreement would be self‑enforcing through smart contracts: if either party violates the terms, the contract automatically suspends privileges or redistributes funds.

For the bootstrap recognizer, the calculus is clear: a share of a growing digital economy far outweighs the modest territorial concession. For the network state, recognition unlocks a path to full sovereignty. As more recognizers emerge, network states can accumulate bilateral recognition, eventually gaining enough clout to join multilateral bodies or even the United Nations—if the UN still exists.

Example: The St. Therese Catholic Network State (500,000 members, $2 B annual income, properties in 30 countries) seeks recognition from Malta. Malta grants limited sovereignty—a digital embassy in Valletta, legal recognition of St. Therese passports, and a tax treaty. The network state’s treasury (in Ryo) remains unfreezable by any other state. Citizens now hold dual citizenship: Maltese (physical) and St. Therese (digital).

VII. The Digital Nation World Order: Governance Models for DAOs and Network States

7.1 The Collapse of the Old Order and the Survival of Religious Institutions

As documented in The Yuan Ultimatum and The End of Free-Floating Fiat, the 1971 monetary order is disintegrating. On March 18, 2026, UN officials admitted the organization is on the brink of complete financial collapse as member states refuse to pay their dues [1]. The institution created to maintain global order after World War II is now itself a casualty of that order’s dissolution.

If states themselves are fracturing—as explored in When Institutions Fail—and the multinational bodies they created are collapsing, what remains? The answer is networks. But also, perhaps, religious institutions.

History offers a powerful precedent. When the Roman Catholic Church lost its temporal power in the 19th century—its territories seized, its political authority shattered—it transformed rather than died. The creation of Vatican City in 1929 resolved a fundamental issue of papal sovereignty, giving the Church a tiny patch of earth from which to operate as a spiritual rather than temporal power. As Jonathan Laurence documents, facing the loss of executive powers, religious institutions “transformed their mission. They became beacons, advocates, and religious service providers for flocks outside their legal jurisdiction. This required ceding political-administrative control over the faithful. It also intensified the focus on performing spiritual oversight across jurisdictional borders by other means” [25].

This raises a crucial possibility: as the current nation-state order collapses, religious institutions—Catholicism, Islam, Orthodoxy, Sikhism, Buddhism, Hindu traditions—could survive and even gain power. They have millennia of experience with transnational organization, moral authority that transcends borders, and existing governance structures that could be ported directly into DAOs. In a world where the UN is bankrupt and states are collapsing, these religious networks could become the most powerful non-state actors. They could choose to become network states themselves—or they could become the moral compasses under which other network states operate.

7.2 The Spectrum of DAO Governance Models: Micro, Macro, and Network-State Level

DAOs operate at multiple scales, and understanding the differences is essential for network state design.

Micro‑governance DAOs are small, purpose‑bound communities—a guild of designers, a neighborhood association, a hobbyist club. They typically use simple token voting and off‑chain coordination. Their decisions affect only members, and disputes are often resolved socially. Examples from God, State, and Network include Maria’s Local Parent‑Teacher DAO and Neighborhood Watch DAO.

Macro‑governance DAOs are larger and more complex—DeFi protocols like Compound, Aave, or Morpho. These face what industry observers call a “midlife crisis”: the tension between decentralized ideals and commercial efficiency [26]. Some, like Compound, maintain pure on‑chain governance with long decision cycles (2‑4 weeks). Others, like Morpho, delegate market creation to professional curators, achieving rapid expansion (200 new markets in 2024) but risking curator centralization. Aave attempts a balancing act with dual‑track governance—DAO‑controlled main pools and KYC‑exclusive institutional markets. The tradeoffs are stark: decentralization brings security and legitimacy but slowness; delegation brings speed and efficiency but centralization risk.

Network‑state level governance DAOs are what this article concerns: DAOs that aspire to sovereignty. They must combine the legitimacy of macro‑governance DAOs with the agility of micro‑governance DAOs, plus additional layers: citizenship, territory, diplomacy, and defense. They require what Srinivasan calls “consensual government limited by a social smart contract”—a framework where members explicitly consent to be bound by the DAO’s rules, encoded in smart contracts, with the ability to exit at any time [27].

The key insight is that these levels are nested. A network state may contain within it thousands of micro‑governance DAOs (guilds, neighborhoods, affinity groups) and interface with macro‑governance DAOs (DeFi protocols, arbitration services). Ryo’s architecture supports all three levels through its privacy‑by‑default design and DAO‑native governance tools.

7.3 Pure Free Market DAOs and the Kleros Model

At the pure free market end of the spectrum are DAOs that impose no conditions beyond respect for property rights and voluntary exchange. They are platforms for economic cooperation, not moral communities. But even these require dispute resolution mechanisms. This is where Kleros enters.

Kleros is a blockchain‑based dispute resolution platform that relies on a network of jurors randomly selected from token‑holding users. Jurors evaluate submitted evidence and vote on outcomes, incentivized through a native token (PNK) [28]. It is, in the words of legal scholars, “a decentralized sheriff”—a socio‑legal organism where crowdsourced jurors, incentivized by game theory and cryptocurrency, attempt to fill the regulatory vacuum left by states.

The Kleros Governor contract allows DAOs to submit batches of transactions representing governance decisions. If multiple lists are submitted, a dispute is automatically created and jurors choose the correct list [29]. This creates a hybrid model: code‑fed substance wrapped in human judgment.

The critical question for network states is whether such rulings are enforceable. Under the New York Convention on the Recognition and Enforcement of Foreign Arbitral Awards, an award must be made in the territory of a contracting state to benefit from international enforcement. Stateless mechanisms risk falling outside this regime [28]. However, a 2021 Mexican court enforced a traditional arbitral award that embedded a Kleros decision, creating a procedural hybrid. This suggests a path forward: hybrid justice where decentralized rulings are reviewed by formal arbitrators, preserving enforceability while maintaining efficiency.

For pure free market DAOs, this is sufficient. They need only neutral arbitration for commercial disputes. They do not require shared morality—only shared consent to the rules of the platform.

7.4 Ideological DAOs: Political and Economic Doctrines

Communist DAO (Marxist Framework): Karl Marx’s Das Kapital (1867) provided a comprehensive critique of capitalism and a vision for a classless society organized around collective ownership of the means of production [30]. A DAO operating on Marxist principles would encode collective ownership through smart contracts, with voting power weighted by labor contribution rather than capital. The treasury would be managed democratically, and “profit” would be reinvested communally rather than distributed to stakeholders. Dispute resolution would prioritize restoration of collective harmony over punitive damages.

Here, Ryo’s privacy features enable a crucial innovation: a Communist DAO without the forced authoritarian compliance seen in historical communist states. Because membership is opt‑in and exit is always possible, there is no need for secret police, gulags, or show trials. The “dictatorship of the proletariat” becomes a voluntary association of consenting adults. Smart contracts enforce collective ownership, and Ryo’s privacy protects members from surveillance—including surveillance by their own DAO. This is communism without gulags, made possible by cryptography.

Corporate DAO Conglomerates: A different model entirely: DAOs structured as digital holding companies, with subsidiary DAOs operating as autonomous business units. These would be the successors to multinational corporations—but transparent, borderless, and governed by code rather than by opaque boards of directors. The governance structure would be weighted by stake, with voting rights proportional to investment or contribution. Disputes would be resolved through commercial arbitration, either traditional (via recognized arbitral institutions) or decentralized (via Kleros-style platforms).

The corporate DAO model offers several advantages over traditional corporate structures. First, it eliminates jurisdictional arbitrage—the practice of incorporating in tax havens to avoid regulation. The DAO exists on-chain, subject only to its own smart contracts and the arbitration agreements it enters into. Second, it enables fractional ownership of assets at unprecedented scale and liquidity. A corporate DAO could own real estate, intellectual property, or entire supply chains, with shares trading 24/7 on decentralized exchanges. Third, it solves the principal-agent problem that plagues traditional corporations: managers are replaced by smart contracts, and owners vote directly on major decisions.

However, corporate DAOs face significant challenges. How do they interact with legacy legal systems? Can they hold property, sign contracts, or defend themselves in court? The solution emerging is the “wrapped DAO”—a traditional legal entity (often a foundation or LLC) that holds off-chain assets and is controlled by the on-chain DAO. This hybrid model preserves the benefits of decentralized governance while maintaining legal personhood. As more jurisdictions pass DAO-friendly legislation (Wyoming’s DAO law, Malta’s blockchain framework), the need for such wrappers may diminish.

Nationalist DAOs: An ideology that cannot be ignored is nationalism—the belief that a particular nation or ethnic group should have its own sovereign polity. A Nationalist DAO would encode criteria for membership based on ancestry, language, or cultural affiliation. Voting power might be weighted by demonstrated commitment to the nation (e.g., living in the ancestral homeland, speaking the language, participating in cultural events). Dispute resolution would prioritize preservation of national identity and traditions. Such DAOs could become the digital expression of stateless nations—Kurds, Catalans, Tibetans—providing governance infrastructure for communities that lack territorial sovereignty.

Consider the Kurdish nation, spread across Turkey, Iran, Iraq, and Syria, with an estimated 30-40 million people but no state of their own [31]. A Kurdish DAO could unite the diaspora, crowdfund development projects in Kurdish regions, and provide educational and cultural services. It could issue digital identity credentials that prove Kurdish heritage without revealing location, protecting members from persecution. Over time, it could crowdfund physical nodes—cultural centers, schools, hospitals—in areas with high Kurdish concentration, creating a network archipelago. With sufficient scale (population, income, real estate), it could seek recognition from a bootstrap recognizer, gradually achieving the sovereignty that has eluded the Kurdish people for a century.

The Catalan nation offers a different model. With 7.5 million people and a clear territorial base in northeastern Spain, Catalonia already has many attributes of statehood—its own language, culture, parliament, and police force. A Catalan DAO could complement existing institutions, providing a parallel governance structure that transcends Spanish jurisdiction. It could manage Catalan-language education worldwide, fund research into Catalan history and culture, and coordinate the Catalan diaspora. In the event of a constitutional crisis in Spain, the DAO could serve as a shadow government, ready to assume sovereignty.

The Tibetan nation, with its unique Buddhist culture and history of theocracy, faces an even more challenging situation. Under Chinese control since 1950, Tibet’s population of 3.5 million has been subjected to cultural assimilation and demographic change. A Tibetan DAO could preserve Tibetan language and Buddhist teachings through digital archives, support monasteries in exile, and crowdfund development projects in Tibetan regions. It could issue digital passports to Tibetans worldwide, creating a recognized identity that the Chinese government cannot control. With sufficient scale, it could seek recognition as a government-in-exile, using network state mechanisms to achieve what traditional diplomacy has not.

Transhumanist DAOs: The transhumanist movement seeks to use technology to enhance human capabilities—extending lifespan, augmenting intelligence, merging with machines. A Transhumanist DAO would fund research into life extension, brain-computer interfaces, and artificial intelligence. Membership might require proof of contributions to these fields (via ZK-proofs to maintain privacy). Governance would be technocratic, with voting power weighted by scientific achievement rather than mere coin holdings.

The transhumanist vision is inherently global—it seeks to transcend not just national boundaries but biological ones. A Transhumanist DAO could fund the development of CRISPR therapies, cryonics facilities, and neural implant research. It could establish physical nodes near cutting-edge research institutions—the Salk Institute, MIT, Tsinghua University—where members could collaborate in person. Dispute resolution would prioritize scientific progress, recognizing that innovation requires tolerating failure and that ethical boundaries must be constantly renegotiated.

The implications for governance are profound. A Transhumanist DAO might weight voting by contributions to knowledge, not wealth. It might have mechanisms for “forking” when members disagree on the ethics of particular technologies. It might fund “longevity escape velocity” research with the explicit goal of achieving indefinite lifespans—a goal that transcends any single generation’s interests. Ryo’s privacy would protect members from discrimination based on their transhumanist beliefs, while its governance tools enable collective action on a global scale.

Anarcho-Primitivist DAOs: At the opposite extreme, anarcho-primitivists reject technology and advocate a return to pre-industrial ways of living. An Anarcho-Primitivist DAO would be paradoxical—using blockchain to fund off-grid communities, sustainable agriculture, and the preservation of traditional skills. Membership might require proof of living in a low-tech community, with heavy penalties for members who use banned technologies. Dispute resolution would follow traditional customs rather than coded rules.

Why would anarcho-primitivists use blockchain at all? Because even those who reject technology must interact with a world that uses it. A primitivist community needs to acquire land, defend its boundaries, and trade with outsiders. A DAO provides a way to do this without adopting the technological lifestyle internally. The DAO could hold title to communal land, manage a treasury of Ryo for purchasing supplies, and coordinate defense—all while members live off-grid, using only pre-industrial tools.

The paradox is productive. It reveals that even communities that reject technology can benefit from cryptographic governance. Ryo’s privacy ensures that their location and activities remain hidden from hostile outsiders. Its fungibility ensures that their coins are not tainted by association with the technological world. And its DAO tools enable them to govern themselves collectively, without hierarchy, in accordance with their values.

Green/Environmentalist DAOs: With climate change as a existential threat, Green DAOs could encode ecological principles into governance. Voting power might be weighted by carbon footprint (lower is better) or by contributions to environmental restoration. Treasuries would fund renewable energy, reforestation, and conservation projects. Dispute resolution would prioritize the rights of future generations and non-human species—a radical departure from anthropocentric legal systems.

7.4.6 A Note on Harmful Ideologies

Any honest survey of possible governance models must acknowledge that even abhorrent ideologies—violent religious extremism, ethno‑supremacism, terrorist organizations, and criminal enterprises—could in principle attempt to organize as DAOs. This is not an endorsement; it is an observation about the nature of consent‑based systems. The critical safeguard is that such a DAO could never impose itself on anyone. It would exist only through voluntary membership, and its ability to interact with the world would depend entirely on other DAOs choosing to recognize it. Foundation‑layer states could deny it access to infrastructure; neutral arbitration services could refuse to enforce its contracts; its members could be deplatformed from essential services; and physical‑world law enforcement would remain available in legacy states where its nodes are located. In a network state system, harmful ideologies are contained not by state violence but by the peaceful refusal of the wider community to cooperate with them. The paradox of tolerance is resolved through layered consent, not through censorship or coercion.

7.5 Religious DAOs: Ancient Wisdom Meets Digital Governance

Religious communities represent some of the largest and most resilient networks in human history. Their governance structures have evolved over millennia, and with over 5.8 billion adherents worldwide, they dwarf any state or corporation. Below we examine each tradition in depth.

Hinduism (Approx. 1.2 billion adherents): The ancient Hindu scriptures—the Vedas, Upanishads, Bhagavad Gita, Ramayana, Mahabharata, Artha Shastra, and Manu Smriti—encode sophisticated governance principles. As recent scholarship demonstrates, these texts contain frameworks for transparency, anti‑corruption, inclusive governance, and sustainable business that align with modern OECD guidelines [32]. Concepts such as Sama Darshana (equal vision), Vidya‑Dhana (knowledge as a gift), and Dharmic Governance offer a spiritually enriched foundation for ethical enterprise.

The Varna system, often misunderstood, is described in the Bhagavad Gita as a classification based on functional specialization—aptitudes for governing (Kshatriyas), commerce (Vaishyas), service (Shudras), and knowledge (Brahmins)—what Adam Smith would later call division of labor [33]. The Manusmriti even prescribes interest rates based on risk: Brahmins borrowing for yagnas pay the lowest rates, Kshatriyas funding conquests pay more, and Vaishyas financing overseas voyages pay the highest—a sophisticated recognition of risk premium thousands of years before modern finance.

A Hindu DAO could draw on this heritage. It might weight voting by demonstrated wisdom rather than mere coin holdings, structure governance to reflect functional specialization (separate councils for spiritual, commercial, and civic matters), and encode Dharmic principles of righteousness and duty into smart contracts. The Bhagavad Gita’s concept of swadharma—one’s own sense of right and wrong—becomes a personalized moral compass within a collectively governed framework. Dispute resolution could involve panels of respected gurus or acharyas, with rulings enforced on-chain.

Catholicism (Approx. 1.3 billion adherents): The Catholic Church possesses the most sophisticated hierarchical governance structure in human history, centered on the Vatican and the papacy. The Pope, as the successor of Peter, holds supreme legislative, executive, and judicial authority. The Roman Curia, the College of Cardinals, and the Synod of Bishops provide advisory and administrative support. Canon law, a comprehensive legal system dating back centuries, governs everything from sacraments to property disputes.

A Catholic DAO could integrate with this existing framework in multiple ways. At minimum, it could encode Catholic moral teaching (e.g., Mensuram Bonam investment guidelines) into its smart contracts [34]. More ambitiously, it could create a parallel digital structure that recognizes the Pope as ultimate arbiter of moral questions, while handling day‑to‑day governance through on‑chain voting. Disputes involving doctrine could be referred to Vatican authorities; commercial disputes could be settled through the DAO’s own arbitration mechanisms.

The Church’s global diocesan structure could become a network archipelago, with parishes as nodes and the Vatican as the virtual capital. Tithes could flow automatically through smart contracts, with privacy preserved for donors. Bishops could be elected by local DAOs, with their authority recognized by the central Church DAO. As Laurence notes, the Church survived its loss of temporal power by transforming its mission: it became “beacons, advocates, and religious service providers” operating across jurisdictional borders [25]. A Catholic DAO is the logical extension of this evolution—a digital diocese for the network state era.

Islam (Approx. 1.9 billion adherents): Islamic governance has historically combined religious authority (ulema) with political authority (caliphate). The Ottoman caliphate, in its final century, flourished as a spiritual project, abandoning efforts to reclaim lost lands and pursuing spiritual dominion instead—a precedent for religious authority without temporal power [25]. Sharia law provides a comprehensive framework for personal conduct, commerce, and governance, with different schools of jurisprudence (Hanafi, Maliki, Shafi’i, Hanbali, Ja’fari) offering varied interpretations.

A Sharia‑compliant DAO would encode prohibitions on riba (interest) and requirements for risk‑sharing directly into its smart contracts [35]. All financial transactions would be asset‑backed, with speculation prohibited. For dispute resolution, the DAO could establish a digital shura (council) of qualified scholars, whose rulings would be enforced on‑chain. Different schools of Islamic jurisprudence could give rise to competing DAOs, each encoding its own interpretation of Sharia—much as different Protestant denominations emerged from the Reformation.

The global Muslim community (ummah) already functions as a transnational network, with the Hajj pilgrimage as the ultimate public display of alignment. A Muslim network state could build on this foundation, with mosques as nodes, the Kaaba as a virtual capital, and the principles of zakat (obligatory alms) automated through smart contracts. Ryo’s privacy would protect donors and recipients alike, fulfilling the Quranic ideal of charity given without expectation of reward.

Sikhism (Approx. 25-30 million adherents): The Sikh tradition has existing institutional structures that could integrate with DAOs. The Akal Takht (the highest temporal seat of authority) and the Shiromani Gurdwara Parbandhak Committee (SGPC) provide established governance frameworks [36]. The Guru Granth Sahib serves as the eternal Guru, and congregational decision-making (sangat) has deep roots in Sikh practice. The Sikh Rehat Maryada (Code of Conduct) provides detailed rules for communal life and dispute resolution [37].

A Sikh DAO could encode the three pillars of Sikhism into its governance: Kirat Karo (honest labor) through a reputation system that verifies fair dealing, Vand Chhako (sharing) through automated tithing to community funds, and Naam Japo (meditation) through community‑funded gurdwaras and meditation centers. The langar tradition of free community meals could be funded through a dedicated treasury, with Ryo’s privacy ensuring that donors remain anonymous.

Disputes could be referred to a digital sangat (congregation), with serious matters escalated to a panel of respected granthis whose rulings would be enforced on‑chain. The Akal Takht could serve as the ultimate appellate authority, with its edicts automatically executed across the network state’s jurisdiction. As with other traditions, Ryo’s privacy would protect members from surveillance while maintaining accountability through transparent treasuries.

Buddhism (Approx. 500 million adherents): Buddhist governance varies significantly across traditions, but the Dalai Lama’s leadership of Tibetan Buddhism provides one possible model. The Sangha (monastic community) has centuries of experience with collective decision-making, often through councils of senior monks. The Vinaya Pitaka, part of the Pali Canon, provides detailed rules for conduct and dispute resolution [38]. The Foundation for the Preservation of the Mahayana Tradition (FPMT) offers a contemporary example of a global Buddhist organization with centralized guidance and local autonomy [39].

A Buddhist DAO would encode the principle of right livelihood, prohibiting investments in weapons, intoxicants, or businesses that cause suffering. The treasury would fund meditation centers, monasteries, and educational institutions. Governance could be structured around a council of respected teachers, with voting weighted by demonstrated wisdom and compassion rather than mere coin holdings.

Dispute resolution would emphasize the restoration of harmony over punitive measures. The Vinaya’s procedures for addressing transgressions—confession, restitution, and, in serious cases, expulsion—could be encoded in smart contracts. Ryo’s privacy would protect the identities of those seeking guidance or confession, while ensuring that serious matters are addressed by the community.

Judaism (Approx. 15 million adherents): Jewish communities have millennia of experience with self‑governance in diaspora. The beit din (rabbinical court) system provides a sophisticated framework for dispute resolution, with a hierarchy of local, regional, and central courts. The Talmud contains extensive commercial law, including detailed regulations on partnerships, loans, and property [40]. Modern organizations such as the Rabbinical Council of America provide models for transnational religious governance [41].

A Jewish DAO could draw on this tradition, with a digital beit din for dispute resolution, tzedakah (charity) obligations automated through smart contracts, and heter iska (partnership agreements) encoded for business transactions. The DAO could recognize the authority of existing rabbinical bodies while handling day‑to‑day governance on‑chain. The concept of dina d’malkhuta dina (“the law of the land is law”) would guide interactions with other network states, providing a framework for recognizing external jurisdiction when appropriate.

Ryo’s privacy would protect donors to tzedakah funds, fulfilling the highest form of charity (where neither giver nor receiver knows the other). The mixnet would prevent surveillance of Jewish communities, a critical protection given centuries of persecution. The DAO could also fund physical security for synagogues and community centers, with allocations transparent to members but hidden from adversaries.

Orthodox Christianity (Approx. 220 million adherents): The Orthodox Church’s conciliar governance—councils of bishops making decisions collectively—maps naturally to DAO structures. The Ecumenical Patriarch holds a primacy of honor rather than jurisdiction, with each autocephalous church governing its own affairs. This decentralized model aligns with network state principles.

A Philanthropia Treasury could fund charitable works, with contributions private but distributions publicly auditable. The principle of oikonomia (economy, or dispensation) would allow for flexible application of canonical rules in individual cases, handled through private ZK‑proof submissions to a council of spiritual elders [42]. The DAO could support monasteries as physical nodes in the network archipelago, with monks providing spiritual guidance and the DAO providing material support.

Dispute resolution would involve councils of bishops or respected elders, with rulings enforced on‑chain. The conciliar model ensures that no single bishop can dominate, while Ryo’s privacy protects individual bishops from political pressure. The Orthodox tradition’s emphasis on beauty and liturgy could also fund digital iconography and virtual worship spaces.

Confucianism (Ethical framework for approx. 1.5 billion people in East Asia): While not a religion in the Western sense, Confucianism provides a comprehensive ethical framework that has governed East Asian societies for millennia. The Analects, Mencius, and other classics emphasize ren (benevolence), yi (righteousness), li (ritual propriety), and zhi (wisdom).

A Confucian DAO would prioritize yi (righteousness) over li (profit), weight voting by demonstrated virtue, and structure governance to mirror the five key relationships [43]. Dispute resolution would emphasize harmony and the restoration of relationships, guided by the judgment of a council of elders. The concept of the “junzi” (exemplary person) could serve as a model for leadership, with leaders chosen for their moral character rather than their wealth.

Ryo’s privacy would protect individuals from surveillance while allowing the community to recognize virtuous conduct through ZK‑proofs. The DAO could fund educational institutions, ancestral rites, and community welfare programs. In a world where the nation-state order is collapsing, Confucian principles could provide a stable foundation for governance, drawing on millennia of experience with managing complex societies without centralized coercion.

7.6 Living in Multiple DAOs: The Kurdistan Example

How would an individual navigate this complex landscape of overlapping DAOs? Consider a Kurdish Muslim woman, Ayla, who lives in a secular foundation state (e.g., the Austin Free Market Network State) but participates in multiple communities:

  • Kurdistan DAO: Ayla proves her Kurdish heritage through ZK-proofs, gaining access to cultural education, language preservation projects, and a diaspora mutual aid network. She votes on funding for schools in Kurdish regions and contributes to a treasury that supports Kurdish political advocacy.
  • Islamic DAO: Ayla participates in a Sharia‑compliant DAO for her religious community. Her zakat obligations are automatically calculated and distributed, with privacy preserved. The DAO funds local mosques and provides halal investment opportunities.
  • Multinational Corporate DAO: Ayla works as a software engineer for a corporate DAO that operates globally. Her salary is paid in Ryo, and she holds governance tokens that give her a voice in company decisions. The DAO’s smart contracts handle payroll, benefits, and dispute resolution without revealing her identity to colleagues.
  • Micro‑DAOs: Ayla belongs to a neighborhood watch DAO that coordinates security in her physical community, a professional guild for software engineers, and a hobbyist DAO for traditional Kurdish weaving. Each uses Ryo for micro‑transactions and ZK‑proofs for membership verification.

All of these memberships are managed through the same Ryo wallet, with privacy preserved across all interactions. No single DAO can see her activities in others. This is the power of the network state system: individuals can participate in multiple communities, each governing different aspects of their lives, without surveillance or coercion.

7.7 Dispute Settlement in a World of Diverse DAOs

When DAOs with radically different governance models interact—a Catholic DAO contracting with a Communist DAO—how are disputes resolved? The answer is the same as in international trade today: through agreed‑upon arbitration mechanisms.

Two DAOs entering into a contract would specify in advance the dispute resolution procedure. This could be:

  • Neutral arbitration: A decentralized service like Kleros, where jurors are selected randomly and rulings enforced automatically by smart contracts.
  • Religious arbitration: Both parties agree to submit disputes to a specified religious authority, whose rulings are encoded on‑chain.
  • Hybrid arbitration: A multi‑stage process, with initial attempts at mediation within each DAO’s framework, escalating to neutral arbitration if necessary. The Mexican precedent—a Kleros decision wrapped in a formal arbitral award—provides a model for such hybrids [28].

The key insight is that technology does not eliminate diversity; it enables diverse communities to coexist peacefully by providing neutral infrastructure for interaction when they choose to interact, and allowing complete separation when they prefer.

VIII. Defense, Policing, and Infrastructure in the Network State Era

8.1 The Problem of Violence

Any polity that aspires to sovereignty must address the fundamental challenge of violence—both external (defense) and internal (policing). In the network state era, these functions will look very different than in the nation-state system.

External defense relies less on standing armies and more on what Srinivasan calls “cryptographic enforcement” [4]. A network state’s treasury is unfreezable, its communications are encrypted, and its members are distributed across jurisdictions. Attacking such a state is not like invading a territory; it is like trying to arrest a cloud. The 2022 freezing of Russian assets demonstrated that physical states can be attacked financially, but a network state with assets in Ryo is immune to such measures.

Internal policing is more complex. How does a network state handle violent crime, theft, or fraud? The answer lies in a layered approach:

  • Smart contract enforcement: Many crimes can be prevented through code. Theft is impossible without private keys. Fraud requires falsifying ZK-proofs, which is computationally infeasible.
  • Decentralized arbitration: For disputes that cannot be prevented, Kleros-style arbitration provides resolution without physical force.
  • Local security DAOs: Physical nodes of the network archipelago would have their own security arrangements—neighborhood watch DAOs, private security contracts, or agreements with local police.
  • Reputation systems: Members who violate norms lose access to network state services, a powerful deterrent.

For serious violent crime, network states would likely contract with existing law enforcement agencies. A Catholic network state in Malta would rely on Maltese police to investigate murder, just as a foreign embassy relies on host-country law enforcement today. Over time, network states might develop their own security forces, but only after achieving sufficient scale and territorial concentration.

8.2 Real-World Infrastructure: Roads, Bridges, Power

Infrastructure presents a different challenge. Network states are archipelagos, not contiguous territories—they cannot build a single highway system spanning their nodes. Instead, they rely on the infrastructure of the legacy states in which their nodes are located.

This is not as limiting as it sounds. Even today, most infrastructure is provided by local governments. A network state’s nodes would be located in cities and towns that already have roads, utilities, and emergency services. The network state pays for these services through taxes or fees to the local jurisdiction, just as any resident or business does.

For infrastructure that network states need but cannot source locally—such as private high‑speed internet links between nodes—they can crowdfund and build it themselves. This is already happening with Starlink and community mesh networks. Ryo’s treasury tools enable transparent funding and governance of such projects.

IX. The Recentralized Center: A World of Network States

9.1 What Is the Recentralized Center?

Srinivasan’s answer to both American Anarchy and Chinese Control [44]. It is not a return to the nation-state system, but a new form of political organization that combines the best of both worlds: the flexibility and consent of decentralized networks with the stability and coordination of centralized governance.

The recentralized center is a world of many network states, each with its own moral code, all connected through neutral protocols. It is conscious recentralization into opt‑in communities—not imposed from above, but built from below by people who choose to associate with each other. It is the opposite of both anarchy (no governance) and tyranny (imposed governance).

In practice, the recentralized center would function through a nested hierarchy of DAOs:

  • Foundation layer: Secular, neutral network states that provide basic infrastructure—property rights, dispute resolution, physical security—to anyone who opts in. These are the digital equivalent of international waters: platforms for cooperation without moral content.
  • Community layer: Religious and ideological DAOs that provide shared values, mutual aid, and worship. Members of these DAOs also belong to foundation-layer states, which handle matters on which all can agree.
  • Affinity layer: Single-issue DAOs for hobbies, professions, or causes. These cut across community lines, enabling cooperation on specific projects without requiring agreement on deeper values.
  • Local layer: Physical proximity DAOs for neighborhoods, towns, and cities. These handle matters that require geographic coordination—roads, utilities, emergency services—while respecting the diverse values of their members.

This layered model ensures that individuals are never forced to choose between their values and their livelihoods. A Catholic can live in a secular foundation state, worship in a Catholic DAO, work in a professional guild, and participate in a neighborhood watch—all using the same Ryo wallet, all protected by the same privacy layer, all governed by the same cryptographic guarantees.

9.2 How the Recentralized Center Differs from the Nation-State System

The recentralized center is not simply the nation-state system reborn. The differences are fundamental:

Aspect Nation-State System Recentralized Center
Membership Birth‑based, involuntary Consent‑based, opt‑in
Governance Territorial, top‑down Functional, layered, bottom‑up
Dispute resolution Courts, coercion Arbitration, exit
Identity Single, exclusive Multiple, nested
Money State‑controlled fiat Neutral cryptocurrency (Ryo)
Legitimacy Elections, force Consent, cryptography

The recentralized center thus resolves the ancient tension between individual freedom and collective action. Individuals are free to choose which communities to join, and communities are free to govern themselves according to their values—but all are bound by the neutral infrastructure that enables them to interact peacefully.

9.3 Ryo as the Neutral Settlement Layer

Just as gold served Catholic monarchies, Protestant merchants, and Islamic caliphates, Ryo can serve diverse network states. A Catholic state and a secular libertarian state can transact using Ryo—neutral, private, uncensorable. The mixnet can even hide the fact of transaction between states, preventing adversaries from mapping the network state system.

Ryo’s privacy features are essential here. In a world where many states may be hostile to each other, the ability to transact privately prevents adversaries from targeting specific communities. A Catholic state trading with a Muslim state should not have its transactions visible to a hostile third party. Ryo’s default privacy ensures that such transactions remain confidential, while its DAO governance tools enable states to manage their own internal affairs.

9.4 Interoperability and the Network State System

Multiple network states can recognize each other’s citizens and passports through bilateral agreements encoded in smart contracts. A citizen of the Catholic network state traveling to the Sikh network state could present a ZK‑proof of their citizenship, revealing nothing else about themselves. The two states could agree to enforce each other’s civil judgments, creating a web of reciprocal recognition.

Future developments could include atomic swaps between network state currencies, all settled in Ryo. A citizen of the Communist DAO could exchange labor credits for goods from the Corporate DAO, with the swap executed automatically and privately. The recentralized center thus enables a global economy that respects local values.

9.5 The Vision: A Multipolar World of Digital Nations

Thousands of network states, populations from 10,000 to 10 million. Citizens hold multiple citizenships, participate in multiple DAOs, and move freely between physical nodes. Ryo is the common economic layer—private, fungible, governable. As Srinivasan writes: “The network is the lives (national network), the land (metaverse subnet), the law (governance network), and the Leviathan (Bitcoin network) all packed into one” [45]. For network states, Ryo fulfills all four roles.

This vision is not a fantasy. The technology exists. Ryo provides the missing piece: money that is private, sovereign, and architected for the network age. The path from network union to network state is open. The only question is who will walk it.

X. Conclusion: The Architecture of Freedom

We began this series with a missile‑strike on the Strait of Hormuz and end with a vision of thousands of digital nations. The old system—free‑floating fiat, unipolar hegemony, the UN itself—is dying. The new system—digital blocs, programmable money, algorithmic surveillance—is being born. But within that system, a third force has emerged: the Network Leviathan.

Ryo Currency is not just another privacy coin. It is the economic layer for the network state era. It meets every requirement that thinkers from Glazyev to Dalio to Srinivasan have identified: unfreezable, private, decentralized, fairly distributed, governable. It supports communities at every stage, from the first network union to the diplomatically recognized network state. While Ryo’s current liquidity and market cap are still growing, its technical roadmap is explicitly designed for exactly this use case.

Srinivasan’s roadmap is not a fantasy. The technology exists. Ryo provides the missing piece: money that is private, sovereign, and architected for the network age. The path from network union to network state is open. The only question is who will walk it.

As Adam Smith understood, markets require a moral foundation. In the network state era, that foundation is not imposed by a sovereign—it is chosen by each community, encoded in its DAO, and protected by cryptography. Ryo is the neutral substrate that enables this diversity to flourish.

In the age of the Network, sovereignty is no longer granted. It is compiled.

The era of free‑floating fiat is over. The era of network states has begun. The only question is whether you will have the tools to move between them.

XI. Call to Action

  • Read Balaji Srinivasan’s The Network State. Understand the full framework.
  • Study Ryo’s roadmap: Halo 2, mixnet, proof‑of‑stake, DAO integration.
  • Join or start a network union. Use Ryo to organize, transact, and govern.
  • Prepare for the next stage: crowdfunding territory and building the network archipelago.
  • Share this series. The more people understand what’s coming, the better prepared we all will be.

References & Further Reading

This article is the seventh in an ongoing series. Read the first: The Yuan Ultimatum. Read the second: The End of Free-Floating Fiat. Read the third: The Human Chokepoint. Read the fourth: The Prophet and the Hedge Fund King. Read the fifth: When Institutions Fail. Read the sixth: God, State, and Network.

 

 

Executive Summary

As digital currencies and geopolitical blocs reshape the global monetary system, new forms of sovereign organization are emerging outside traditional states. This article explores how financial censorship, programmable money, and digital infrastructure may give rise to network states — and why privacy-first currencies like Ryo could become foundational economic layers for these decentralized societies, with future DAOs enabling community governance and collective sovereignty.

When Institutions Fail: Balaji Srinivasan, Network States, and the Architecture of Economic Sovereignty

“When institutions fail, cryptocurrency is the backup system.” — Balaji Srinivasan

I. Introduction: The Unwritten Future

The free-floating fiat system established in 1971 is entering its terminal phase. The debt supercycle, the weaponization of finance, and the fracturing of global trust have brought us to a crossroads [1]. In The Yuan Ultimatum, we witnessed the triggering event. In The End of Free-Floating Fiat, we traced the systemic collapse. In The Human Chokepoint, we saw who gets hurt. In The Prophet and the Hedge Fund King, we heard the intellectual convergence on neutral assets.

But what actually comes next? The answer is not a single, predetermined path. History teaches that monetary transitions of this magnitude are never smooth. They are accompanied by social chaos, economic restructuring, and the violent devaluation of currencies as populations are forcibly moved from free-floating money to allocated digital systems [2]. The collapse of the Soviet Union and the fracturing of Yugoslavia remind us that states themselves can disintegrate, leaving behind contested territories and competing currencies—newly issued sovereign currencies of successor states, parallel dollarization, and, increasingly, cryptocurrencies operating outside any state’s control [3].

This article maps the possible futures through the framework of one of the most provocative thinkers of our era: Balaji Srinivasan, entrepreneur, investor, and author of The Network State [4]. His core insight—“When institutions fail, cryptocurrency is the backup system”—provides the lens for understanding every scenario ahead. From the collapse of free-floating fiat to the rise of digital blocs, from institutional failure to the emergence of network states, Srinivasan’s vision illuminates both the dangers and the opportunities. And at the intersection of these scenarios lies a single question: what tool will preserve economic sovereignty when all else fails?

II. The Transition: From Free-Floating Fiat to Digital Control—And Its Failure Modes

The end of free-floating fiat does not necessarily mean the disappearance of the dollar, euro, or yuan. It means their transformation into digital, programmable currencies—CBDCs and regulated stablecoins—designed for control rather than freedom [5]. Every major bloc is pursuing this transition: China with its e-CNY [6], the EU with its digital euro, the United States with its hybrid approach of CBDC and regulated stablecoins [7].

But will these systems actually work? History suggests skepticism is warranted. Monetary transitions are never clean. The introduction of the euro required years of preparation and still faced crises. The transition from Soviet republics to independent currencies was chaotic [8]. And digital currency systems face challenges their physical predecessors never encountered: technical failures, cybersecurity vulnerabilities, and perhaps most critically, popular resistance.

Populations do not passively accept the replacement of their money. The backlash against cashless initiatives in Sweden, the protests against demonetization in India, and the widespread rejection of vaccine mandates demonstrate that people resist when they feel their autonomy threatened [9]. A CBDC that expires, that tracks every purchase, that can be frozen at will—this is not money as humanity has known it. It is a tool of control, and it will be resisted.

Some blocs may succeed in implementation. Others will fail. States may fracture under the pressure, as the Soviet Union and Yugoslavia did, leaving behind contested territories and competing currencies. In such a landscape, the currencies competing for allegiance would include:

  • New sovereign currencies issued by breakaway republics and successor states, each claiming legitimacy but lacking trust
  • Foreign currencies like the dollar or euro, adopted as unofficial substitutes (dollarization)
  • Cryptocurrencies—Bitcoin, privacy coins like Ryo—operating entirely outside state control, requiring no issuer trust
  • Local scrips and barter systems emerging when official money fails

In this competition, the currency that requires no state backing, no issuer trust, and no institutional infrastructure has a structural advantage. That is cryptocurrency’s role: the backup system that runs when everything else breaks.

III. Balaji Srinivasan’s Framework: The Four-Sided Conflict and the Backup System

To navigate this landscape, we need a map. Few have provided one as compelling as Balaji Srinivasan, whose work spans technology, finance, and political theory. A Stanford-trained engineer, former general partner at Andreessen Horowitz, and former CTO of Coinbase, Srinivasan has spent the past decade developing a framework for understanding the realignment of power in the digital age [10].

The U-Shaped Curve

Srinivasan points to a 2,000-year chart of global GDP centered on Eurasia. Before the Industrial Revolution, Asia enjoyed durable economic parity with the West. Steam power shifted the vector toward Europe and America, reaching its peak in 1950—the “zero point” of the current American-centric establishment. Now, the world is rapidly returning to its pre-1950 state along a “U-shaped curve,” with Asia reasserting its historical economic weight [11].

“I can show many other charts, but the essence is this curve,” Srinivasan explains. “The MAGA movement—and even Build Back Better—is an attempt to go back to 1950. Because that became the ‘zero point’ of the current establishment.” This rebalancing renders obsolete the institutions created after World War II—the UN, the World Bank, the IMF—because “money is where power is, and the West no longer has it” [11].

The Four-Sided Conflict

Srinivasan argues that the old binary of “red vs. blue America” has been superseded by a four-sided conflict: China, the internet, red America, and blue America. China, through advances in robotics and drone manufacturing, threatens red America’s production and military power. The internet, through AI and cryptocurrency, threatens blue America’s control over media and finance [11].

“I think that by 2035–2040—maybe earlier, maybe later—the following will happen: the Democrats will side with the Chinese communists, and the Republicans will become bitcoin maximalists,” he predicts. This is not mere speculation but a recognition of structural alignment: the regulatory and surveillance state appeals to those who seek control, while decentralized technology appeals to those who seek freedom [11].

 

When Institutions Fail, Crypto Is the Backup

This brings us to Srinivasan’s most important insight: cryptocurrency is not merely an asset class—it is a backup system for when traditional institutions fail [12]. “When institutions fail, cryptocurrency is the backup system,” he argues. In a world where banks lose credibility, political systems are distrusted, and surveillance expands, crypto offers an exit path [12].

He points to the foundational breakthroughs: Bitcoin brought decentralized currency; Ethereum brought programmability; and Zcash solved privacy, which he considers essential for true sovereignty [12]. “If you’re under surveillance, you don’t have sovereignty. If every move is tracked… you lose the element of surprise. You can never act. You can never negotiate privately.”

In his most provocative framing, Srinivasan declares: “The choice is clear. Either Zcash or communism.” With AI amplifying surveillance capabilities, any online information fragment can now be integrated into comprehensive personal profiles. He draws a historical parallel: in 1918, Lenin needed lists of names to target kulaks. If encryption becomes the default, “there are no complete lists. No fixed location. They cannot hit what they cannot see” [13].

IV. The Network State: From Digital Community to Physical Sovereignty

Srinivasan’s book The Network State (2022) extends this framework from money to governance itself. A network state is “a highly aligned online community with a capacity for collective action that crowdfunds territory around the world and eventually gains diplomatic recognition from pre-existing states” [14] [4].

This is not mere theory. In 2024, Srinivasan launched Network School in Forest City, Malaysia—a troubled $100 billion megaproject that became a refuge for crypto entrepreneurs and techno-utopians [15]. Nearly 400 students have participated, building crypto projects and testing whether shared ideology can bind a community [15]. The goal is to create “startup societies” that can eventually gain diplomatic recognition [15].

Critics call it “techno-colonialism”—wealthy Westerners exploiting weaker nations to create libertarian enclaves [16]. Prospera, a “startup city” in Honduras, has become embroiled in legal disputes with its host country [17]. Yet the movement continues, backed by millions from Peter Thiel and other tech billionaires [16].

For our purposes, the significance of the network state movement is not its feasibility but its framing. Srinivasan articulates what many feel: that the nation-state system is failing, that digital communities are real communities, and that technology offers tools for exit. Whether network states succeed or fail, they illuminate the desire for sovereignty that drives the search for neutral money.

V. Scenarios: From Bloc Implementation to Total Collapse

With this framework, we can map the possible futures that lie ahead. In each, Srinivasan’s insight holds: when institutions fail, cryptocurrency becomes the backup system.

Scenario 1: The Bloc System Is Implemented

In this scenario, the major powers succeed in rolling out their digital currencies. The yuan bloc [6], dollar bloc, euro bloc, and BRICS Unit with its mBridge infrastructure [18] function as designed. Economic activity is channeled through programmable money, with all the surveillance and control capabilities that entails [19]. Yet even here, the system is not total. Interstices remain—grey zones where neutral assets can flow. Privacy-preserving digital cash becomes the currency of cross-bloc trade, enabling value to move between controlled systems without surveillance. The blocs coexist with the network, each serving different needs. The institutions have not failed—but those who value sovereignty still have a backup.

Scenario 2: Implementation Fails, States Fracture

History suggests that ambitious monetary transitions often fail. The technical challenges of CBDC rollout are immense. Popular resistance may be fiercer than elites anticipate. Some states may fracture under the pressure, as the Soviet Union and Yugoslavia did [3]. In this scenario, the landscape becomes chaotic—competing currencies, contested territories, and collapsing institutions. Here, Srinivasan’s thesis activates: cryptocurrencies, which require no state backing to function, become the default medium of exchange. Those holding privacy-preserving assets retain the ability to transact; those trapped in failing digital systems lose everything [12].

Scenario 3: Total Institutional Collapse

In the most extreme scenario, the cascade of failures becomes systemic. Sovereign debt defaults trigger bank runs; multinational banking establishments collapse; governments lose the capacity to enforce their rules. This is not the orderly transition to digital blocs but the breakdown of all systems. In this chaos, traditional financial infrastructure fails—but cryptocurrencies continue to operate. Bitcoin’s blockchain runs as long as there is electricity and internet. Privacy protocols continue to process transactions. The world does not revert to barter; it shifts to decentralized, permissionless money by default [12]. Srinivasan’s backup system becomes the primary system.

Scenario 4: The Network State Emerges

Srinivasan’s vision offers a fourth path: the gradual replacement of geographic nation-states with digital communities that achieve sovereignty through technology [14] [4]. In this world, the multinational banking establishment loses relevance. Power localizes to individuals, DAOs, and network states that coordinate through blockchain-based governance. Privacy-preserving digital cash becomes the native currency of these new polities. Here, the backup system doesn’t just replace failing institutions—it creates new ones, built on cryptographic trust rather than state power [20].

VI. The Privacy Imperative: Why Ryo Currency

Srinivasan identifies Zcash as the breakthrough that solved privacy. But the implementation matters as much as the technology. Ryo Currency deploys the same next-generation zero-knowledge proofs—Halo 2—that power the latest privacy innovations, including those employed by Zcash [21]. The critical difference is in the design philosophy.

Zcash offers optional privacy: users can choose between transparent and shielded transactions. This creates a two-tier system where the choice to use privacy becomes a signal, compromising true fungibility [22]. Ryo takes a different approach: privacy by default. Every transaction is private. Every coin is indistinguishable from every other coin. There is no option to be transparent, and therefore no signal in using privacy. This is the foundation of true fungibility—the property that makes money work [23].

Ryo’s architecture goes further. Its Cryptonight-GPU mining algorithm is specifically designed to resist ASICs and botnets, ensuring that mining remains accessible to ordinary participants with consumer GPUs [24]. When the chain forked from Sumokoin, 8.79 million pre-mined coins were permanently burned [25]. No premine. No ICO. No venture capital allocation. The network belongs to its users, not to any insider class [26].

And beyond on-chain privacy, Ryo is developing a high-latency mixnet to obfuscate network-level metadata. IP addresses, timing patterns, and connection logs can reveal transaction origins even if the blockchain is private [27]. The mixnet routes traffic through multiple nodes, adding delays and reordering packets, making traffic analysis impractical.

Looking further ahead, Ryo’s roadmap points toward a transition to proof-of-stake, which would open the door for Decentralized Autonomous Organizations (DAOs)—community-governed entities that operate through smart contracts without central control [28]. A future proof-of-stake Ryo network could enable DAOs to manage treasury funds, govern protocol parameters, and coordinate collective action entirely on-chain, creating the precise infrastructure that network states would need to achieve true sovereignty [4]. In this vision, Ryo would evolve from a privacy-preserving currency into the foundational economic layer for entire digital nations—network states whose governance is conducted through transparent, community-run DAOs, whose treasury is held in uncensorable assets, and whose citizens transact with true financial privacy [20].

VII. The Neutral Money Doctrine: Ryo as Backup System and Network State Foundation

Across all scenarios—bloc implementation, state fracture, total collapse, or network state emergence—one requirement remains constant: the need for a neutral, private, uncensorable asset that can move value between systems and preserve sovereignty when institutions fail.

The thinkers we have encountered throughout this series converge on the same principles:

  • From Sergei Glazyev: assets that “no single bloc can freeze” [29].
  • From Ray Dalio: assets that cannot be tracked [30].
  • From Daniel Lacalle: the shift from debt-based to asset-based reserves [31].
  • From Balaji Srinivasan: tools that work in wartime, not just peacetime [32].

Ryo Currency meets these requirements through deliberate architectural choices that align perfectly with Srinivasan’s vision of a backup system. It requires no state backing, no issuer trust, no institutional infrastructure. It runs as long as there is electricity and internet. It preserves privacy even under pervasive surveillance. It cannot be frozen, tracked, or controlled by any bloc [12].

In a bloc world, Ryo serves as the neutral bridge asset—the digital equivalent of international waters where value can move between controlled systems without surveillance. In a fractured world, it becomes the default currency of the grey zones. In a collapsed world, it is one of the few systems still standing. In a network state world, it is the native money of digital polities, with DAOs providing the governance layer for communities that choose sovereignty [20].

VIII. The Road Ahead: Ryo and the Future of Freedom

Srinivasan envisions a future where network states compete for citizens, each offering its own governance and currency. In that world, the currency that offers true privacy—that cannot be frozen, surveilled, or controlled—will attract those who value freedom. The network state that adopts Ryo as its native money will have a competitive advantage over those tied to transparent or controlled systems [20].

Bitcoin maximalism argues that one digital currency will eventually dominate all others. But Bitcoin lacks privacy. Its transparent ledger is a feature for auditors, a fatal flaw for those seeking sovereignty [33]. The future may belong not to Bitcoin maximalism but to a recognition that true economic sovereignty requires true privacy. And in the competition of currencies that will define the coming era—whether between blocs, successor states, or network states—the currency that cannot be controlled has a structural advantage.

This is not mere speculation. The infrastructure already exists. The technology is mature. The only question is adoption. As Srinivasan notes, blockchain infrastructure has quietly matured: scalable smart contracts run continuously, decentralized exchanges function, stablecoins are widely used [12]. The pieces are in place.

And so we end with a thought grounded in the logic of the system: when institutions fail—and they will fail, in some places, in some ways—the backup system activates. Those who have prepared will have tools that cannot be taken from them. Those who have not will be left to the mercy of whatever arises from the chaos. The choice, as Srinivasan would say, is clear: surveillance or privacy, control or sovereignty, dependence on failing institutions or the backup system that runs regardless.

The old world is gone. The new world is being born in uncertainty. The only question is whether you will have the tools to navigate it.

IX. Call to Action

  • Read Balaji Srinivasan’s The Network State. Understand the framework for exit and sovereignty in the digital age [10] [4].
  • Study the architecture of privacy-preserving digital cash. Not all privacy is equal. Ryo’s by-default privacy, fair distribution, and next-generation technology make it the strongest foundation for true sovereignty.
  • Prepare for the scenarios ahead. Hold assets that cannot be frozen, tracked, or controlled. Learn self-custody. Build the tools for exit before you need them.

The era of free-floating fiat is over. The era of blocs, fractures, and network states has begun. The only question is whether you will have the tools to move between them—and whether you choose control or sovereignty.


Primary Sources

  1. People’s Bank of China, Progress of Research & Development of E-CNY, official policy paper outlining digital yuan deployment and transaction infrastructure.

    https://www.pbc.gov.cn/en/3688110/3688172/4157443/index.html
  2. Bank for International Settlements Innovation Hub, Project mBridge: Connecting Economies Through CBDC, describing cross-border CBDC settlement pilots involving multiple central banks.

    https://www.bis.org/about/bisih/topics/cbdc/mbridge.htm
  3. Srinivasan, Balaji. The Network State (2022), describing digitally coordinated communities capable of forming sovereign governance structures through blockchain infrastructure.

    https://thenetworkstate.com/

This article is the fifth in a seven‑part series. Read the first: The Yuan Ultimatum. Read the second: The End of Free-Floating Fiat. Read the third: The Human Chokepoint. Read the fourth: The Prophet and the Hedge Fund King. Read the sixth: God, State, and Network. Read the seventh: From Network Union to Network State.