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Designing Optimal iBGP Route-Reflection Topologies

机译:设计最优IBGP路线反射拓扑

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The Border Gateway Protocol (BGP) is used today by all Autonomous Systems (AS) in the Internet. Inside each AS, iBGP sessions distribute the external routes among the routers. In large ASs, relying on a full-mesh of iBGP sessions between routers is not scalable, so route-reflection is commonly used. The scalability of route-reflection compared to an iBGP full-mesh comes at the cost of opacity in the choice of best routes by the routers inside the AS. This opacity induces problems like suboptimal route choices in terms of IGP cost, deflection and forwarding loops. In this work we propose a solution to design iBGP route-reflection topologies which lead to the same routing as with an iBGP full-mesh and having a minimal number of iBGP sessions. Moreover we compute a robust topology even if a single node or link failure occurs. We apply our methodology on the network of a tier-1 ISP. Twice as many iBGP sessions are required to ensure robustness to single IGP failure. The number of required iBGP sessions in our robust topology is however not much larger than in the current iBGP topology used in the tier-1 ISP network.
机译:边界网关协议(BGP)今天由Internet中的所有自主系统(AS)使用。在每个AS中,IBGP会话在路由器之间分发外部路由。在大屁股中,依赖于路由器之间的IBGP会话的全网格不可缩放,因此常用路由反射。与IBGP全网格相比的路由反射可扩展性以否则的路由器选择最佳路线的不透明度的成本。这种不透明度在IGP成本,偏转和转发循环方面引起了次优路由选择等问题。在这项工作中,我们提出了一种解决方案来设计IBGP路由反射拓扑,它导致与IBGP全网格的路由相同,并具有最小数量的IBGP会话。此外,我们即使发生单个节点或链路故障也会计算鲁棒拓扑。我们在Tier-1 ISP的网络上应用我们的方法。需要两倍的IBGP会话以确保对单个IGP故障的稳健性。然而,我们强大的拓扑中所需的IBGP会话的数量并不大于Tier-1 ISP网络中使用的当前IBGP拓扑中。

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