基于 PoW 的区块链安全性定量分析

Maher Alharby, Ali Alssaiari, Saad Alateef, Nigel Thomas, Aad van Moorsel
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摘要

本研究分析了 "工作证明 "区块链在陈旧区块率和缺乏区块验证过程方面的安全影响。陈旧区块率是一个重要的安全指标,它量化了区块链网络中被拒绝区块的比例。缺乏区块验证过程是另一个重要的安全问题,因为它允许在网络中进行无效交易。在本文中,我们提出并实施了一个定量分析模型,利用性能评估过程代数来捕捉工作证明区块链的主要操作。所提出的模型可以帮助区块链设计者、架构师和分析师通过确定适当的网络和共识设置来实现区块链系统的理想安全级别。我们进行了大量实验,以确定安全性对以下四个方面的敏感性:活跃矿工的数量及其挖矿哈希率、区块之间的持续时间、区块传播的延迟以及区块验证所需的时间。我们首次分析了矿工数量如何影响陈旧区块结果的出现频率,以及区块传播延迟如何影响选择避开区块验证过程的理性矿工获得的奖励,从而为现有研究成果做出了贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A quantitative analysis of the security of PoW-based blockchains

This study analyzes the security implications of Proof-of-Work blockchains with respect to the stale block rate and the lack of a block verification process. The stale block rate is a crucial security metric that quantifies the proportion of rejected blocks in the blockchain network. The absence of a block verification process represents another critical security concern, as it permits the potential for invalid transactions within the network. In this article, we propose and implement a quantitative and analytical model to capture the primary operations of Proof-of-Work blockchains utilizing the Performance Evaluation Process Algebra. The proposed model can assist blockchain designers, architects, and analysts in achieving the ideal security level for blockchain systems by determining the proper network and consensus settings. We conduct extensive experiments to determine the sensitivity of security to four aspects: the number of active miners and their mining hash rates, the duration between blocks, the latency in block propagation, and the time required for block verification, all of which have been shown to influence the outcomes. We contribute to the findings of the existing research by conducting the first analysis of how the number of miners affects the frequency of stale block results, as well as how the delay in block propagation influences the incentives received by rational miners who choose to avoid the block verification process.

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