软件定义网络的多路径路由算法研究

Siddharth S. Kulkarni, Venkataramana Badarla
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引用次数: 2

摘要

软件定义网络(SDN)是计算机网络中的一种新兴现象。SDN将网络的控制元素和转发元素分开。它具有集中管理、可编程、更安全、粒度和可靠性等特点。因此,SDN适用于数据中心、云计算和运营商网络。由于主要关注可靠性和容错性,这些网络固有地在网络中的任意两个节点之间添加多条路径,从而为网络容量(吞吐量)的潜在增益创造了机会。背压算法利用了源节点和目的节点之间的所有可能路径,是一种吞吐量最优的路由调度算法。然而,它表现出过高的延迟和抖动。为了实现网络容量增加的关键优势,在这项工作中,我们建议在软件定义网络中使用背压路由。然而,我们利用SDN的集中控制和监控特性来解决背压算法带来的高延迟和抖动问题。通过大量的模拟对改进后的背压算法进行了评估,并观察到在保持基本背压算法的吞吐量最优性的同时显著减少了延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On multipath routing algorithm for software defined networks
Software Defined Networking (SDN) is an emerging phenomenon in computer networking. SDN splits control element and forwarding element of a network. It has characteristics such as centralized management, programmability, more security, granularity and reliability. Therefore SDN is suitable for data center, cloud computing and carrier networks. As reliability and fault tolerance are main concerns, these networks inherently add multiple paths between any two nodes in the network, thus creating opportunities for potential gain in network capacity (throughput). Back-pressure algorithm which uses all possible paths between the source and destination nodes is proven as a throughput optimal routing and scheduling algorithm. However, it exhibits excessively high delays and jitter. In order to realize the key benefit of gain in network capacity, in this work we propose to use back-pressure routing in software-defined networks. However, we address the problem of high delays and jitter associated with back-pressure algorithm by using centralized control and monitoring feature of SDN. The modified backpressure algorithm is evaluated through extensive simulations and observed a significant reduction in delays while retaining throughput optimality of the basic back-pressure algorithm.
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