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Availability analysis of a permissioned blockchain with a lightweight consensus protocol

机译:具有轻量级共识协议的许可区块链的可用性分析

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摘要

This paper offers a novel approach to the evaluation of provenance blockchain security and reliability using analytical methods for assessing system availability against malicious miner DoS attacks. In particular, we present the reliability and availability analysis of the Lightweight Mining (LWM) protocol for securing data provenance. Our analysis shows the reliability of the protocol and its ability to protect against malicious miner DoS attacks. We use digital signatures to prove integrity and non-repudiation of messages passing the system. We describe system behaviors using communicating sequential processes (CSP) to check for synchronization within a number of concurrent processes. Queuing theory is used to determine the average waiting time for client blockchain transactions when malicious miners work to slow the system. CSP and queuing theory jointly test the blockchain's ability to make progress despite the presence of malicious miners. Further, the methodology described can be extended to other blockchain applications. Additional threats, beyond the malicious miner DoS attack, are reserved for future work.
机译:本文提供了一种新颖的方法,可以使用分析方法评估出售区块的安全性和可靠性,以评估恶意矿工DOS攻击的系统可用性。特别是,我们提出了用于保护数据出处的轻质挖掘(LWM)协议的可靠性和可用性分析。我们的分析显示了协议的可靠性及其防止恶意矿工DOS攻击的能力。我们使用数字签名来证明通过系统的消息的完整性和不拒绝。我们使用通信顺序处理(CSP)来描述系统行为,以检查在多个并发进程中的同步。排队理论用于确定恶意矿工工作缓慢系统时客户端块交易的平均等待时间。 CSP和排队理论共同测试区块链的能力尽管存在恶意矿工。此外,所描述的方法可以扩展到其他区块链接应用程序。除了恶意矿工DOS攻击之外,额外的威胁是为了未来的工作。

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