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June 13, 2026International Journal of Reasoning-based Intelligent Systems0 citationsOpen Access

Legal requirement identification and zero-knowledge proof under concealed addresses

PJPing JiHWHaijie Wang

Key Points

  • The aim is to integrate legal requirements with blockchain technology to enhance compliance without sacrificing privacy.
  • Developed an integration framework using zero-knowledge proof technology.
  • Conducted experiments on a public blockchain transaction dataset (Elliptic) to evaluate performance.
  • Simulated concealment on a transparent dataset for proof-of-concept validation.
  • Achieved over 15% improvement in identification performance compared to traditional methods.
  • Maintained acceptable performance overhead during implementation.
  • Demonstrated potential variances in actual performance on native privacy-preserving chains.

Abstract

In the face of the regulatory failure problem caused by blockchain hidden addresses, existing solutions often fall into a dilemma where 'privacy protection' and 'compliance review' are either one or the other.This paper proposes an innovative integration framework that transforms the behavioural elements in anti-money laundering and other legal provisions (such as 'high-frequency and small-scale transactions') into computable logic.Based on zero-knowledge proof technology, it generates verifiable credentials to determine whether the transaction behaviour is compliant without revealing the true identity of the address.Experiments on a public blockchain transaction dataset (elliptic) show that this framework achieves an average improvement of over 15% in core identification performance compared to traditional non-private rule-based methods, while maintaining an acceptable performance overhead.As a proof-of-concept validation conducted on a transparent dataset with simulated concealment, the actual performance may differ in native privacy-preserving chains.This research provides a new approach that combines legal rigor with technical feasibility for achieving effective on-chain behaviour supervision while protecting user privacy.

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Cite This Study

Ji et al. (2026) studied this question.

synapsesocial.com/papers/6a2cf5d7faef96ed7f057c97https://doi.org/10.1504/ijris.2026.154052
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Blockchain Privacy and Self-Regulatory Compliance: Methods and Applications2024 · 2 citations
  2. 2Zero-Knowledge Proofs For Privacy-Preserving Systems: A Survey Across Blockchain, Identity, And Beyond2025 · 5 citations
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  4. 4Zero-Knowledge Enabled Cross-Border Payment Systems: Advancing Privacy and Compliance in Blockchain Architectures2025 · 1 citations
  5. 5Anonymous transaction amount verification system based on zero knowledge range proof2026