Performance analysis of a consensus algorithm combining stochastic activity networks and measurements

A. Coccoli, P. Urbán, A. Bondavalli
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引用次数: 37

Abstract

Protocols which solve agreement problems are essential building blocks for fault tolerant distributed applications. While many protocols have been published, little has been done to analyze their performance. This paper represents a starting point for such studies, by focusing on the consensus problem, a problem related to most other agreement problems. The paper analyzes the latency of a consensus algorithm designed for the asynchronous model with failure detectors, by combining experiments on a cluster of PCs and simulation using stochastic activity networks. We evaluated the latency in runs (1) with no failures nor failure suspicions, (2) with failures but no wrong suspicions and (3) with no failures but with (wrong) failure suspicions. We validated the adequacy and the usability of the stochastic activity network model by comparing experimental results with those obtained from the model. This has led us to identify limitations of the model and the measurements, and suggests new directions for evaluating the performance of agreement protocols.
结合随机活动网络和测量的一致性算法的性能分析
解决协议问题的协议是容错分布式应用程序的基本组成部分。虽然已经发表了许多协议,但对其性能进行分析的工作却很少。本文通过关注与大多数其他协议问题相关的共识问题,为此类研究提供了一个起点。本文通过在pc机集群上的实验和随机活动网络上的仿真相结合,分析了为异步模型设计的具有故障检测器的共识算法的延迟。我们评估了运行中的延迟(1)没有故障也没有故障怀疑,(2)有故障但没有错误怀疑,(3)没有故障但有(错误的)故障怀疑。通过与实验结果的比较,验证了随机活动网络模型的充分性和可用性。这使我们认识到模型和测量的局限性,并为评估协议协议的性能提出了新的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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