Optimized model analysis of blockchain PoW procotol under long delay attack

Tao Feng, Yufeng Liu
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引用次数: 1

Abstract

Abstract:Proof of work(POW) is one of the most widely used consensus method of bitcoin. In some chains, because of the large number of users, the huge amount of information interaction data, equipment hardware failure or malicious attacks on some nodes may cause communication delay, All of these may engender forks on the blockchain resulting data lose. Therefore, whether the blockchain protocol can achieve sufficient security in the asynchronous network environment with long delay, so how to reduce fork and user's data loss caused by long delay attack are important issue related to blockchain protocol. In this study,we optimized the existing model and proposed TOD to describe the evolution state of the main chain accurately.
长延时攻击下区块链PoW协议的优化模型分析
摘要:工作量证明(POW)是比特币使用最广泛的共识方法之一。在一些链中,由于用户数量庞大,信息交互数据量巨大,设备硬件故障或某些节点受到恶意攻击,可能导致通信延迟,这些都可能在区块链上产生分叉,导致数据丢失。因此,区块链协议能否在长时延的异步网络环境下实现足够的安全性,从而如何减少长时延攻击导致的分叉和用户数据丢失是与区块链协议相关的重要问题。在本研究中,我们对现有模型进行了优化,提出了TOD来准确描述主链的演化状态。
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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