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February 22, 20260 citationsOpen Access

Homomorphic Encryption-Based Transaction Confidentiality: A Comprehensive Analysis of Privacy-Preserving Peer-to-Peer Digital Payment Protocols

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ELEunice LeeCLCaleb Lee

Key Points

  • The aim is to analyze how the Elliptic Homomorphic Token protocol improves transaction privacy and efficiency.
  • Performed theoretical analysis under standard cryptographic assumptions
  • Conducted experimental evaluation of transaction processing speed and latency
  • Compared the EHT protocol with existing privacy-focused systems
  • EHT achieves 1000 transactions per second with 50-100ms latency
  • Performance improvements exceed 100× compared to prior systems
  • Maintains strong privacy guarantees without complex zero-knowledge proofs

Abstract

Contemporary digital currency systems face fundamental challenges in achieving optimal balance between transaction privacy, computational efficiency, and cryptographic security. While zero-knowledge proof systems have dominated privacy-preserving cryptocurrency research, their practical implementations often involve prohibitive computational overhead that limits real-world deployment. This paper presents a comprehensive analysis of the Elliptic Homomorphic Token (EHT) protocol, which leverages elliptic curve-based partially homomorphic encryption to enable privacy-preserving peer-to-peer transactions without the computational complexity of zero-knowledge constructions. Our theoretical analysis demonstrates strong privacy guarantees under standard cryptographic assumptions, while experimental evaluation shows that EHT achieves 1000 transactions per second with 50-100ms latency. The protocol eliminates the need for complex zero-knowledge proofs by directly utilizing elliptic curve cryptographic primitives, resulting in performance improvements exceeding 100× over existing privacy-focused systems while maintaining equivalent security properties.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/699a9e2d482488d673cd4b58https://doi.org/10.5281/zenodo.18708146
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