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Pop-routing: Centrality-based tuning of control messages for faster route convergence

机译:弹出路由:基于集中性的控制消息调整,以实现更快的路由收敛

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Fast and efficient recovery from node failure, with minimal disruption of routes and the consequent traffic loss is of the utmost importance for any routing protocol. Link-state protocols, albeit preferred to distance vector ones because of faster convergence, still suffer from a trade-off between control message overhead and performance. This work formalizes the routes' disruption following a node failure as an optimization problem depending on the nodes' centrality in the topology, constrained to a constant signaling overhead. Next, it shows that the solution can be found using Lagrange Multipliers. The solution complexity is low enough to be computed on-line on the network routers, thus obtaining the optimal setting of control message timers that minimize the traffic loss following a node failure. The gain obtained is quantified in power-law synthetic topologies, and it is also tested on real network topologies extending the OLSR protocol to use the modified timers, showing that the inevitable approximations introduced in the analysis do not hamper the very good results achievable through this novel approach. The technique can be applied to any link state protocol, including OSPF, and improves route convergence not only upon failures but on every topology modification.
机译:对于任何路由协议而言,从节点故障中快速有效地恢复,最小程度地中断路由以及随之而来的流量损失都是至关重要的。尽管链路状态协议由于收敛速度更快而比距离矢量协议更可取,但它们仍然要在控制消息开销和性能之间进行权衡。这项工作将节点故障后的路由中断形式化为优化问题,这取决于节点在拓扑结构中的中心性,并受限于恒定的信令开销。接下来,它表明可以使用拉格朗日乘数找到解决方案。解决方案的复杂度很低,足以在网络路由器上进行在线计算,因此获得了控制消息计时器的最佳设置,可将节点故障后的流量损失降至最低。所获得的增益在幂律综合拓扑中进行了量化,并且还在扩展OLSR协议以使用修改的计时器的实际网络拓扑中进行了测试,这表明分析中引入的不可避免的近似值不会妨碍由此获得的非常好的结果新方法。该技术可以应用于包括OSPF在内的任何链路状态协议,并且不仅可以在发生故障时还可以在每次拓扑修改时改善路由收敛。

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