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Measuring the Contributions of Routing Dynamics to Prolonged End-to-End Internet Path Failures

机译:测量路由动力学的贡献,长时间的端到端互联网路径故障

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This paper studies the contributions of routing dynamics to the duration of long-lived end-to-end Internet path failures. Studies have shown that end-to-end Internet failures (periods of prolonged packet loss) are widespread. These failures are typically attributed to either congestion or routing dynamics. Unfortunately, the extent to which congestion and routing dynamics contribute to long-lasting path failures, and the effect of routing dynamics on end-to-end performance, are not well understood. This paper uses a joint analysis of active measurements and routing data to characterize end-to-end failures observed over one month on a topologically diverse Internet testbed. We find that routing dynamics coincide with most prolonged end-to-end failures, suggesting that routing dynamics contribute significantly to the duration of these failures. We also find that most long-lived end-to-end path failures that coincide with routing dynamics are caused by BGP convergence or instability. Our results provide new insights into the effects of routing instability on end-to-end Internet path performance.
机译:本文研究路由动力学对长期终端到最终互联网路径故障的持续时间的贡献。研究表明,端到端的互联网故障(长期丢包)是广泛的。这些故障通常归因于拥塞或路由动态。遗憾的是,拥塞和路由动态导致长持久路径故障的程度以及路由动态对端到端性能的影响,并不充分了解。本文采用了主动测量和路由数据的联合分析,以表征在一个拓扑多样的互联网上观察到一个月内的端到端故障。我们发现路由动态与最长的端到端故障相一致,表明路由动态贡献了这些故障的持续时间。我们还发现,与路由动态相一致的最长寿命的端到端路径故障是由BGP收敛或不稳定引起的。我们的结果为路由不稳定对端到端互联网路径性能的影响提供了新的见解。

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