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Load-balanced data aggregation tree construction for large scale cluster monitoring system

机译:大规模集群监控系统的负载平衡数据聚合树构造

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The cluster monitoring system observes the operation of the system, analyzes the performance data, and displays results. It is crucial for cluster management and performance measurements as the monitoring data can be used to diagnose problems and to suggest remedies by both end users and system administrators. Scalable resource monitoring is essential to the cluster management. This paper proposes a scalable cluster monitoring architecture that builds a structured data aggregation tree(DAT) of master monitoring nodes by using the Chord P2P algorithm. The DAT leverages the Chord topology and routing mechanisms and it is implicitly constructed from native Chord routing paths without previous monitoring nodes membership and topology configuration. To balance the storage space used by monitoring data and computing load of the monitoring node, we propose a balanced routing algorithm that dynamically selects the parent of a node from its finger nodes by its distance to the root. We have evaluated the performance and scalability of our DAT-based monitoring system with up to 2500 nodes in a simulated environment. Our experiments results show that the balanced DAT scheme monitoring system scales well to a large number of nodes. Without explicitly configuring parent-child relationship, it is well adaptive to node arrival and departure and can be easily deployed.
机译:群集监控系统观察系统的操作,分析性能数据,并显示结果。对于群集管理和性能测量至关重要,因为监控数据可用于诊断问题并由最终用户和系统管理员建议辅助。可扩展的资源监控对于群集管理至关重要。本文提出了一种可扩展的群集监控体系结构,通过使用弦P2P算法构建主监视节点的结构化数据聚合树(DAT)。 DAT利用了和弦拓扑和路由机制,并且隐式从本机和弦路径路径中隐式构建,而无需以前的监视节点成员资格和拓扑配置。要平衡监视数据和计算负载监视节点的存储空间,我们提出了一种平衡的路由算法,它通过与根目录的距离动态地从其手指节点中选择节点的父节点。我们已经评估了我们基于DAT的监控系统的性能和可扩展性,在模拟环境中具有多达2500个节点。我们的实验结果表明,平衡DAT方案监控系统将系统缩放为大量节点。如果没有显式配置父子关系,则可以很好地适应节点到达和出发,并且可以轻松地部署。

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