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Multi-AS cooperative incoming traffic engineering in a transit-edge separate internet

机译:跨边缘独立互联网中的多自治系统协作传入流量工程

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摘要

Internet is composed of independent autonomous systems (ASes) which are selfish by nature. In the current inter-domain routing system, for an AS, incoming traffic is harder to control than outgoing traffic because its incoming traffic routing is ultimately determined by other ASes. This problem stays the same in the leading new routing architecture proposals (such as transit edge separation protocols) when addressing scalability challenges. In this paper, we use LISP as an example to study cooperative incoming traffic engineering in a selfish multi-AS context in such proposals. First, we analyze conflicted egress tunnel routers (ETRs) selections of edge ASes, which choose ETRs that are best for their individual delay performance, but neglect incoming traffic engineering performance of other edge ASes. Then, we propose the cooperative incoming traffic engineering, where edge ASes sacrifice limited delay performance for optimizing incoming traffic engineering performance between each other. Furthermore, we measure the delay variations between different RLOCs with experiments on PlanetLab to verify the rationality of considering the impact of ETR selections on delay performance. Finally we evaluate the performance of cooperative incoming traffic engineering. The proposed method achieves Pareto optimality and can greatly improve the robustness and resiliency of ASes based on simulations.
机译:互联网由本质上自私的独立自主系统(ASes)组成。在当前的域间路由系统中,对于AS,传入流量比传出流量更难控制,因为其传入流量路由最终由其他AS确定。在解决可伸缩性挑战时,领先的新路由体系结构建议(例如传输边缘分离协议)中的问题仍然存在。在本文中,我们以LISP为例,以此类提议研究自私的多自治系统环境中的合作传入流量工程。首先,我们分析边缘AS的冲突出口隧道路由器(ETR)选择,它们选择最适合其单个延迟性能的ETR,却忽略了其他边缘AS的传入流量工程性能。然后,我们提出了协作式传入流量工程,其中边缘AS牺牲有限的延迟性能来优化彼此之间的传入流量工程性能。此外,我们通过PlanetLab上的实验来测量不同RLOC之间的延迟变化,以验证考虑ETR选择对延迟性能的影响的合理性。最后,我们评估了协同传入流量工程的性能。所提出的方法达到了帕累托最优,并可以通过仿真大大提高AS的鲁棒性和弹性。

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