基于SDN的全局优化多路径路由算法

Noel Farrugia, Victor Buttigieg, J. A. Briffa
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引用次数: 5

摘要

软件定义网络(SDN)模型承诺交付的网络体系结构能够比当前的分布式网络体系结构更有效地处理当前和未来应用程序的需求。SDN通过迁移到逻辑上集中的控制平面来获得这种能力。集中式网络控制器拥有关于网络拓扑和使用网络的流的最新信息。在这项工作中,我们使用网络控制器上已有的信息来创建全局优化的逐包多路径路由算法。最优逐包多路径路由算法可能会在不同的路径之间不均匀地分割流。当前支持SDN的硬件不能以不均匀的方式分割流,同时仍然保持可扩展性。为了克服这一限制,我们还提出了一种随机流分裂机制,能够将流分成任意数量的分数组件,同时提供比当前方法更好的可扩展性。为了分析我们提出的系统的性能,使用了GEANT网络拓扑。在高流量负载下,我们的系统显示,与OSPF和ECMP相比,流的接收吞吐量提高了90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A globally optimised multipath routing algorithm using SDN
The Software Defined Network (SDN) model promises the delivery of a network architecture capable of handling the demands of current and future applications more efficiently than the current distributed network architecture. SDN gains this ability by moving to a logically centralised control plane. The centralised network controller has up to date information on both the network topology and the flows using the network. In this work we use the information already available at the network controller to create a globally optimised Per-Packet multipath routing algorithm. An optimal Per-Packet multipath routing algorithm may split a flow unequally between different paths. Current SDN capable hardware is not able to split flows in an unequal fashion while still remaining scalable. To overcome this limitation, we also propose a stochastic flow splitting mechanism capable of dividing a flow into any number of fractional components while offering better scalability than current methods. To analyse the performance of our proposed system, the GEANT network topology is used. Under heavy traffic load, our system shows a 90% improvement in a flow's received throughput when compared to OSPF and ECMP.
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