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Failure Detection with Booting in Partially Synchronous Systems

机译:在部分同步系统中启动故障检测

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Unreliable failure detectors are a well known means to enrich asynchronous distributed systems with time-free semantics that allow to solve consensus in the presence of crash failures. Implementing unreliable failure detectors requires a system that provides some synchrony, typically an upper bound on end-to-end message delays. Recently, we introduced an implementation of the perfect failure detector in a novel partially synchronous model, referred to as the Θ-Model, where only the ratio Θ of maximum vs. minimum end-to-end delay of messages that are simultaneously in transit must be known a priori (while the actual delays need not be known and not even be bounded). In this paper, we present an alternative failure detector algorithm, which is based on a clock synchronization algorithm for the Θ-Model. It not only surpasses our first implementation with respect to failure detection time, but also works during the system booting phase.
机译:不可靠的故障探测器是一种众所周知的手段,用于丰富异步分布式系统,其中包含无时间的语义,允许在存在碰撞失败的情况下解决共识。实现不可靠的故障探测器需要一个系统提供一些同步,通常是端到端消息延迟的上限。最近,我们在新颖的部分同步模型中引入了完美失败探测器的实现,称为θ模型,其中只有最大与传输中同时的消息的最小与最小消息的最小端到端延迟的比率θ必须已知先验(而实际延迟不需要知道并且甚至不受限制)。在本文中,我们介绍了一种替代故障检测器算法,其基于θ模型的时钟同步算法。它不仅超越了我们在失败检测时间的第一个实现,而且在系统引导阶段工作也有效。

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