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Peering Equilibrium Multipath Routing: A Game Theory Framework for Internet Peering Settlements

机译:对等平衡多路径路由:Internet对等定居点的博弈论框架

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It is generally admitted that interdomain peering links represent nowadays the main bottleneck of the Internet, particularly because of lack of coordination between providers, which use independent and “selfish” routing policies. We are interested in identifying possible “light” coordination strategies that would allow carriers to better control their peering links while preserving their independence and respective interests. We propose a robust multipath routing coordination framework for peering carriers, which relies on the multiple-exit discriminator (MED) attribute of Border Gateway Protocol (BGP) as signaling medium. Our scheme relies on a game theory modeling, with a non-cooperative potential game considering both routing and congestions costs. Peering equilibrium multipath (PEMP) coordination policies can be implemented by selecting Pareto-superior Nash equilibria at each carrier. We compare different PEMP policies to BGP Multipath schemes by emulating a realistic peering scenario. Our results show that the routing cost can be decreased by roughly 10% with PEMP. We also show that the stability of routes can be significantly improved and that congestion can be practically avoided on the peering links. Finally, we discuss practical implementation aspects and extend the model to multiple players highlighting the possible incentives for the resulting extended peering framework.
机译:通常公认的是,域间对等链接如今已成为Internet的主要瓶颈,尤其是因为提供商之间缺乏协调,后者使用独立的“自私”路由策略。我们对确定可能的“轻型”协调策略感兴趣,这将使运营商能够更好地控制其对等链路,同时保持其独立性和各自的利益。我们提出了一个健壮的针对对等运营商的多路径路由协调框架,该框架依赖于边界网关协议(BGP)的多出口鉴别符(MED)属性作为信令介质。我们的方案依赖于博弈论模型,其中具有考虑路由和拥塞成本的非合作潜在博弈。对等均衡多径(PEMP)协调策略可以通过在每个载波上选择Pareto-上等Nash均衡来实现。通过模拟现实的对等场景,我们将不同的PEMP策略与BGP多路径方案进行了比较。我们的结果表明,使用PEMP可以将路由成本降低大约10%。我们还表明,可以大大提高路由的稳定性,并且可以在对等链路上实际避免拥塞。最后,我们讨论了实际的实现方面,并将模型扩展到多个参与者,强调了产生扩展的对等框架的可能动机。

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