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Verification of a Byzantine-Fault-Tolerant Self-stabilizing Protocol for Clock Synchronization

机译:时钟同步的拜占庭容错自稳定协议的验证

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摘要

This paper presents the mechanical verification of a simplified model of a rapid Byzantine-fault-tolerant self-stabilizing protocol for distributed clock synchronization systems. This protocol does not rely on any assumptions about the initial state of the system except for the presence of sufficient good nodes, thus making the weakest possible assumptions and producing the strongest results. This protocol tolerates bursts of transient failures, and deterministically converges within a time bound that is a linear function of the self-stabilization period. A simplified model of the protocol is verified using the Symbolic Model Verifier (SMV). The system under study consists of 4 nodes, where at most one of the nodes is assumed to be Byzantine faulty. The model checking effort is focused on verifying correctness of the simplified model of the protocol in the presence of a permanent Byzantine fault as well as confirmation of claims of determinism and linear convergence with respect to the self-stabilization period. Although model checking results of the simplified model of the protocol confirm the theoretical predictions, these results do not necessarily confirm that the protocol solves the general case of this problem. Modeling challenges of the protocol and the system are addressed. A number of abstractions are utilized in order to reduce the state space.
机译:本文介绍了分布式时钟同步系统快速拜占庭容错自稳定协议的简化模型的机械验证。该协议除了存在足够好的节点外,不依赖于任何关于系统初始状态的假设,从而做出最弱的假设并产生最强的结果。该协议可承受突发故障的爆发,并确定性地收敛于一个时间范围内,该时间范围是自稳定周期的线性函数。使用符号模型验证器(SMV)验证协议的简化模型。所研究的系统包含4个节点,其中最多一个节点被认为是拜占庭式故障。模型检查工作的重点是在存在永久拜占庭式故障的情况下验证协议简化模型的正确性,以及确认关于自稳定周期的确定性和线性收敛性。尽管协议简化模型的模型检查结果证实了理论上的预测,但这些结果并不一定证实协议已解决了该问题的一般情况。解决了协议和系统的建模难题。为了减少状态空间,使用了许多抽象。

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    Malekpour, Mahyar R.;

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  • 年度 2008
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