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Fault tolerance management in distributed systems: A new leader-based consensus algorithm

机译:分布式系统中的容错管理:一种新的基于领导者的共识算法

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It is well known that consensus algorithms are fundamental building blocks for fault tolerant distributed systems. In the literature of consensus, many algorithms have been proposed to solve this problem in different system models but few attempts have been made to analyze their performance. In this paper we present a new leader-based consensus algorithm (FLC algorithm) for the crash-stop failure model. Our algorithm uses the leader oracle Ω and adapts a decentralized communication pattern. In addition, we analyze and compare the performance of our algorithm to four of the most well-known consensus algorithms among asynchronous distributed systems of the crash-stop failure model. Our results give a global idea of the performance of these algorithms and show that our algorithm gives the best performance when process crashes take place in a system using a multicast network model. At the same time, our algorithm also gives a very acceptable performance, even when crashes occur in a unicast network model and in the case where no process crashes happen within the system.
机译:众所周知,共识算法是容错分布式系统的基本构建块。在共识文献中,已经提出了许多算法来解决不同系统模型中的此问题,但是很少尝试分析其性能。在本文中,我们提出了一种基于新的基于领导者的共识算法(FLC算法),用于碰撞停止故障模型。我们的算法使用前导oracleΩ,并适应分散式通信模式。此外,我们分析并比较了我们的算法与崩溃停止故障模型的异步分布式系统中四种最著名的共识算法的性能。我们的结果给出了这些算法性能的总体思路,并表明当使用多播网络模型的系统中发生进程崩溃时,我们的算法可以提供最佳性能。同时,即使在单播网络模型中发生崩溃以及系统内没有进程崩溃的情况下,我们的算法也提供了非常令人满意的性能。

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