Flow Path Computing in Software Defined Networking

Ohmmar Min Mon, M. Mon
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引用次数: 2

Abstract

With the rapid growth of current network, the demand of resources is growing significantly. Insufficient bandwidth results unstable throughput in a network. Software-defined network (SDN) has been proposed to provide optimal routing decision in the presence of congestion. Equal Cost Multi-path (ECMP) routing cannot guarantee optimal resource utilization. ECMP causes the long flow collision in network because it does not consider the network parameter such as bandwidth. In this paper, the Flow Path Computing Algorithm (FPCA) is proposed to minimize the network congestion by rerouting the flows in SDN. This algorithm mainly focuses on rerouting the traffic flows over the alternative path when the network congestion is detected. If the flow demand is exceeded 10% of link bandwidth, the algorithm computes the light loaded path based on the port statistics and it shifts from the congested path to light loaded path. Simulation results are presented to show the effectiveness of the FPCA algorithm over ECMP.
软件定义网络中的流路径计算
随着当前网络的快速发展,对资源的需求也在显著增长。带宽不足会导致网络吞吐量不稳定。软件定义网络(SDN)被提出用于在拥塞情况下提供最优路由决策。ECMP (Equal Cost Multi-path)路由不能保证资源的最优利用。由于ECMP没有考虑带宽等网络参数,导致了网络中的长流冲突。本文提出了流量路径计算算法(Flow Path Computing Algorithm, FPCA),通过重新路由SDN中的流量来减少网络拥塞。该算法主要关注在检测到网络拥塞时将流量重新路由到备选路径上。当流量需求超过链路带宽的10%时,算法根据端口统计计算出轻载路径,并从拥塞路径向轻载路径转移。仿真结果表明了该算法在ECMP上的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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