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Resilience Analysis for Double Spending via Sequential Decision Optimization

机译:通过顺序决策优化进行双支出弹性分析

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Recently, diverse concepts originating from blockchain ideas have gained increasing popularity. One of the innovations in this technology is the use of the proof-of-work (PoW) concept for reaching a consensus within a distributed network of autonomous computer nodes. This goal has been achieved by design of PoW-based protocols with a built-in equilibrium property: If all participants operate honestly then the best strategy of any agent is also to follow the same protocol. However, there are concerns about the stability of such systems. In this context, the analysis of attack vectors, which represent potentially successful deviations from the honest behavior, turns out to be the most crucial question. Naturally, stability of a blockchain system can be assessed only by determining its most vulnerable components. For this reason, knowing the most successful attacks, regardless of their sophistication level, is inevitable for a reliable stability analysis. In this work, we focus entirely on blockchain systems which are based on the proof-of-work consensus protocols, referred to as PoW-based systems, and consider planning and launching an attack on such system as an optimal sequential decision-making problem under uncertainty. With our results, we suggest a quantitative approach to decide whether a given PoW-based system is vulnerable with respect to this type of attack, which can help assessing and improving its stability.
机译:最近,源自区块链思想的各种概念已越来越受欢迎。该技术的创新之一是使用工作量证明(PoW)概念,以在自治计算机节点的分布式网络内达成共识。通过设计具有内置均衡属性的基于PoW的协议已实现了此目标:如果所有参与者都诚实地操作,那么任何代理的最佳策略也是遵循相同的协议。但是,人们担心这种系统的稳定性。在这种情况下,攻击向量的分析是最关键的问题,它代表了与诚实行为的潜在成功偏离。自然,只有通过确定其最易受攻击的组件,才能评估区块链系统的稳定性。因此,对于可靠的稳定性分析,不可避免地要知道最成功的攻击,无论其复杂程度如何。在这项工作中,我们完全专注于基于工作量证明共识协议的区块链系统(称为基于PoW的系统),并考虑对这种系统进行计划和发动攻击是最佳的顺序决策问题。不确定。根据我们的结果,我们建议采用一种定量方法来确定给定的基于PoW的系统是否容易受到此类攻击,从而有助于评估和提高其稳定性。

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