PTLC:更有效地保护跨链资产交易中的身份隐私

Jingyuan Cai, Ying Zhou, Tianyuan Hu, Bixin Li
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引用次数: 0

摘要

随着区块链技术的不断发展和创新,出现了大量具有各种功能的区块链网络,以满足不同场景的需求。例如,已经提出了跨链技术,以实现两个区块链之间的信息交互和价值转移。在跨链资产交易中,Hashed Timelock Contract(简称HTLC)算法是应用最广泛的资产交易控制算法。但HTLC算法在实际应用中存在安全保障水平较低的问题:攻击者可以通过比较不同链上的合约参数,将跨链交易双方的账户关联起来,从而导致跨链交易双方的身份隐私信息泄露。为了保护跨链交易者的身份隐私信息,本文提出了一种基于Paillier同态加密(PTLC)的跨链资产交易隐私保护新方法,该方法在隐私保护过程中使用Paillier同态加密代替哈希加密。它不仅保持了跨链资产交易的高安全性,而且解决了整个资产交易过程中身份隐私信息泄露的主要问题。在两个不同的以太坊私链上进行了跨链资产交易实验,实验结果表明,提出的PTLC方法可以有效地保护身份隐私信息,并在跨链过程中实现较低的GAS消耗值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PTLC: Protect the Identity Privacy during Cross-Chain Asset Transaction More Effectively
With the continuous development and innovation of blockchain technology, a large number of blockchain networks with various features have emerged to satisfy the needs of differ-ent scenarios. For example, Cross-Chain technologies have been proposed to enable information interaction and value transfer between two blockchains. In Cross-Chain asset transaction, the Hashed Timelock Contract (HTLC for short) algorithm is the most widely used to control asset transaction. However, the HTLC algorithm has a problem of low-level security assurance in practical applications: Attackers can associate the accounts of both parties involved in a Cross-Chain transaction by comparing contract parameters on different chains, which leads to the disclosure of identity privacy information of both relevant parties in the Cross-Chain transactions. In order to protect the identity privacy information of Cross-Chain traders, a new privacy protection method for Cross-Chain asset transaction was proposed based on Paillier homomorphic encryption (PTLC for short) in this paper, which uses Paillier homomorphic encryption to replace hash encryption in privacy protection process. It not only maintains a high security of Cross-Chain asset transaction, but also solves the major problem of identity privacy information leakage during whole asset transaction process. Experiments of cross-chain asset transactions are conducted in two different Ethereum private chains, and experimental results show that the proposed method PTLC can protect the identity privacy information effectively and achieve a low GAS consumption value in the Cross-Chain process.
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