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Route flap damping exacerbates internet routing convergence

机译:路由襟翼阻尼加剧了互联网路由融合

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Route flap damping is considered to be a widely deployed mechanism in core routers that limits the widespread propagation of unstable BGP routing information. Originally designed to suppress route changes caused by link flaps, flap damping attempts to distinguish persistently unstable routes from routes that occasionally fail. It is considered to be a major contributor to the stability of the Internet routing system.We show in this paper that, surprisingly, route flap damping can significantly exacerbate the convergence times of relatively stable routes. For example, a route to a prefix that is withdrawn exactly once and re-announced can be suppressed for up to an hour (using the current RIPE recommended damping parameters). We show that such abnormal behavior fundamentally arises from the interaction of flap damping with BGP path exploration during route withdrawal. We study this interaction using a simple analytical model and understand the impact of various BGP parameters on its occurrence using simulations. Finally, we outline a preliminary proposal to modify route flap damping scheme that removes the undesired interaction in all the topologies we studied. .
机译:路由震荡阻尼被认为是核心路由器中广泛使用的机制,它限制了不稳定BGP路由信息的广泛传播。最初设计是为了抑制由链接襟翼引起的路线变化,襟翼阻尼试图将持续不稳定的路线与偶尔发生故障的路线区分开。它被认为是影响Internet路由系统稳定性的主要因素。我们在本文中表明,令人惊讶的是,路由震荡阻尼会显着加剧相对稳定的路由的收敛时间。例如,到前缀的路由仅被撤消一次并重新宣布,最多可以抑制一个小时(使用当前的RIPE建议的阻尼参数)。我们表明,这种异常行为从根本上起因于在路由撤回过程中襟翼阻尼与BGP路径探索的相互作用。我们使用简单的分析模型研究此交互,并使用模拟了解各种BGP参数对其发生的影响。最后,我们概述了修改路由襟翼阻尼方案的初步建议,该方案消除了我们研究的所有拓扑中的不良相互作用。 。

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