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Personalized Difficulty Adjustment for Countering the Double-Spending Attack in Proof-of-Work Consensus Protocols

机译:个性化难度调整,以应对工作量证明共识协议中的双重支出攻击

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摘要

Bitcoin is the first secure decentralized electronic currency system. However, it is known to be inefficient due to its proof-of-work (PoW) consensus algorithm and has the potential hazard of double spending. In this paper, we aim to reduce the probability of double spending by decreasing the probability of consecutive winning. We first formalize a PoW-based decentralized secure network model in order to present a quantitative analysis. Next, to resolve the risk of double spending, we propose the personalized difficulty adjustment (PDA) mechanism which modifies the difficulty of each participant such that those who win more blocks in the past few rounds have a smaller probability to win in the next round. To analyze the performance of the PDA mechanism, we observe that the system can be modeled by a high-order Markov chain. Finally, we show that PDA effectively decreases the probability of consecutive winning and results in a more trustworthy PoW-based system.
机译:比特币是第一个安全的分散电子货币系统。然而,由于其工作验证(POW)共识算法,并且具有双重支出的潜在危害,因此已知效率低下。在本文中,我们旨在通过降低连续获胜的可能性来降低双重消费的概率。我们首先将基于POW的分散式安全网络模型正式化,以提出定量分析。接下来,为了解决双重支出的风险,我们提出了修改每个参与者的难度的个性化难度调整(PDA)机制,使得在过去几轮中赢得更多块的人在下一轮中赢得了较小的概率。为了分析PDA机制的性能,我们观察到系统可以由高阶马尔可夫链进行建模。最后,我们表明PDA有效地降低了连续获胜的可能性,并导致更值得信赖的基于权力的系统。

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