On the role of topology in autonomously coping with failures in content dissemination systems

Ryan Stern, S. Pallickara
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引用次数: 1

Abstract

Content dissemination systems comprise a large number of nodes that organize themselves into different topologies. In this paper, we explore the role of topologies in autonomously coping with failures. The topologies we consider are based on regular, random, small-world, and power law graphs. Connections within these topologies can account for network proximity and are suitable for real-time communications. We explore specific attributes of a topology that contribute to its failure resiliency. The metrics that we use to profile this resilience include: communication path lengths, network partitions, migration of workloads, and the impact on system throughput. This research will allow designers to choose topologies or configure metrics for a specific topology to achieve their performance objectives.
论拓扑在内容传播系统故障自主处理中的作用
内容传播系统由大量节点组成,这些节点将自己组织成不同的拓扑结构。在本文中,我们探讨了拓扑在自动处理故障中的作用。我们考虑的拓扑是基于正则、随机、小世界和幂律图的。这些拓扑中的连接可以考虑网络邻近性,并且适合于实时通信。我们探索有助于其故障弹性的拓扑的特定属性。我们用来分析这种弹性的指标包括:通信路径长度、网络分区、工作负载迁移以及对系统吞吐量的影响。这项研究将允许设计人员选择拓扑或配置特定拓扑的指标,以实现他们的性能目标。
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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