TMR processing without explicit clock synchronisation

F. Brasileiro, P. Ezhilchelvan, N. Speirs
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引用次数: 2

Abstract

Replicated processing with majority voting is a well known method for achieving fault tolerance. Triple Modular Redundant (TMR) processing is the most commonly used version of that method. Replicated processing requires that the replicas reach agreement on the order in which messages are to be processed. Synchronous and deterministic ordering protocols published in the literature require that the replicas maintain an abstraction of clocks that are kept in known and bounded synchronism. We present a protocol for TMR systems that does not require this abstraction of synchronised clocks. We analyse the protocol performance and show that this protocol in practice can be at least as fast as any synchronised clock based ordering protocol. We also derive a faster protocol that has an improved performance in the absence of processor failures. We then build a TMR node and measure its performance to illustrate that the protocols developed here provide faster ordering and are easier to implement.
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没有显式时钟同步的TMR处理
多数投票的复制处理是实现容错的一种众所周知的方法。三模冗余(TMR)处理是该方法最常用的版本。复制处理要求副本在处理消息的顺序上达成一致。文献中发布的同步和确定性排序协议要求副本维护时钟的抽象,这些时钟保持在已知和有限的同步中。我们提出了一种TMR系统协议,它不需要这种同步时钟的抽象。我们分析了协议的性能,并表明该协议在实践中至少可以与任何基于同步时钟的排序协议一样快。我们还推导出了一个更快的协议,在没有处理器故障的情况下提高了性能。然后,我们构建一个TMR节点并测量其性能,以说明这里开发的协议提供更快的排序并且更容易实现。
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