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Adaptive post-failure load balancing in fast reroute enabled IP networks

机译:启用快速重新路由的IP网络中的自适应故障后负载均衡

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摘要

Fast reroute (FRR) techniques have been designed and standardised in recent years for supporting sub-50-millisecond failure recovery in operational ISP networks. On the other hand, if the provisioning of FRR protection paths does not take into account traffic engineering (TE) requirements, customer traffic may still get disrupted due to post-failure traffic congestion. Such a situation could be more severe in operational networks with highly dynamic traffic patterns. In this paper we propose a distributed technique that enables adaptive control of FRR protection paths against dynamic traffic conditions, resulting in self-optimisation in addition to the self-healing capability. Our approach is based on the Loop-free Alternates (LFA) mechanism that allows non-deterministic provisioning of protection paths. The idea is for repairing routers to periodically re-compute LFA alternative next-hops using a lightweight algorithm for achieving and maintaining optimised post-failure traffic distribution in dynamic network environments. Our experiments based on a real operational network topology and traffic traces across 24 hours have shown that such an approach is able to significantly enhance relevant network performance compared to both TE-agnostic and static TE-aware FRR solutions. © 2011 IEEE.
机译:近年来,已经设计并标准化了快速重路由(FRR)技术,以支持运营ISP网络中50毫秒以下的故障恢复。另一方面,如果FRR保护路径的提供未考虑流量工程(TE)要求,则由于故障后流量拥塞,客户流量可能仍会中断。在具有高度动态流量模式的运营网络中,这种情况可能更加严重。在本文中,我们提出了一种分布式技术,该技术能够针对动态流量条件对FRR保护路径进行自适应控制,从而实现自我优化以及自我修复能力。我们的方法基于无环路替代(LFA)机制,该机制允许不确定性地提供保护路径。这个想法是为了修复路由器,以便使用轻量级算法定期重新计算LFA替代下一跳,以在动态网络环境中实现并维持优化的故障后流量分配。我们基于真实的运营网络拓扑和24小时流量跟踪的实验表明,与TE无关和静态TE感知的FRR解决方案相比,这种方法能够显着提高相关的网络性能。 ©2011 IEEE。

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  • 作者

    Wang N; Fagear A; Pavlou G;

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  • 年度 2011
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  • 正文语种 en
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