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An algebraic approach to practical and scalable overlay network monitoring

机译:一种实用且可扩展的覆盖网络监控的代数方法

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摘要

Overlay network monitoring enables distributed Internet applications to detect and recover from path outages and periods of degraded performance within seconds. For an overlay network with n end hosts, existing systems either require O(n(2)) measurements, and thus lack scalability, or can only estimate the latency but not congestion or failures. Our earlier extended abstract [1] briefly proposes an algebraic approach that selectively monitors k linearly independent paths that can fully describe all the O(n(2)) paths. The loss rates and latency of these k paths can be used to estimate the loss rates and latency of all other paths. Our scheme only assumes knowledge of the underlying IP topology, with links dynamically varying between lossy and normal.In this paper, we improve, implement and extensively evaluate such a monitoring system. We further make the following contributions: i) scalability analysis indicating that for reasonably large n (e.g., 100), the growth of k is bounded as O(n log n), ii) efficient adaptation algorithms for topology changes, such as the addition or removal of end hosts and routing changes, iii) measurement load balancing schemes, and iv) topology measurement error handling. Both simulation and Internet experiments demonstrate we obtain highly accurate path loss rate estimation while adapting to topology changes within seconds and handling topology errors.
机译:覆盖网络监视使分布式Internet应用程序能够在几秒钟内检测路径故障和性能下降时段并从中恢复。对于具有n个终端主机的覆盖网络,现有系统要么需要O(n(2))测量,从而缺乏可伸缩性,要么只能估计延迟,而不能估计拥塞或故障。我们较早的扩展摘要[1]简要提出了一种代数方法,该方法有选择地监视可完全描述所有O(n(2))路径的k个线性独立路径。这k条路径的丢失率和等待时间可用于估计所有其他路径的丢失率和等待时间。我们的方案仅假设基础IP拓扑的知识,并且有损和正常之间的链接会动态变化。在本文中,我们改进,实施和广泛评估了这种监视系统。我们进一步做出以下贡献:i)可伸缩性分析,表明对于相当大的n(例如100),k的增长被限制为O(n log n),ii)拓扑变化的高效自适应算法,例如加法或删除最终主机和路由更改,iii)测量负载平衡方案,iv)拓扑测量错误处理。仿真和Internet实验均表明,我们可以在几秒钟内适应拓扑变化并处理拓扑错误的同时,获得高度准确的路径损耗率估计。

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