An Effective Routing Mechanism for Link Congestion Avoidance in Software-Defined Networking

Ming-Tsung Kao, Bo-Xiang Huang, S. Kao, Hsueh-Wen Tseng
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引用次数: 7

Abstract

In the network environment with limited network resources, the overall bandwidth is usually competitively shared among various application users. The traffic engineering techniques presented for resolving the bandwidth sharing, e.g. limited traffic rate and traffic blocking, may not be able to satisfy the requirement for all types of services. In this paper, we propose an effective routing mechanism for link congestion avoidance in the software-defined networking (SDN) environment. We use a SDN controller to handle actions and forwarding rules. The bandwidth is dynamically allocated to deal with link congestion using a centralized control mechanism. According to the bandwidth utilization, we redirect the traffic from congested links to enhance the efficiency of link usage. In the experiments of emulating congested traffic, we are capable of getting better network performance of throughput, jitter, and packet loss rate using the proposed traffic rerouting, as opposed to the environment without traffic rerouting.
软件定义网络中一种有效的链路拥塞避免路由机制
在网络资源有限的网络环境中,各种应用用户通常会竞相共享总体带宽。为解决带宽共享问题而提出的流量工程技术,如限制流量速率和流量阻塞等,可能无法满足所有类型业务的需求。在本文中,我们提出了一种在软件定义网络(SDN)环境中有效避免链路拥塞的路由机制。我们使用SDN控制器来处理动作和转发规则。通过集中控制机制动态分配带宽,解决链路拥塞问题。根据带宽利用率,对拥塞链路的流量进行重定向,提高链路的使用效率。在模拟拥塞流量的实验中,与不进行流量重路由的环境相比,使用所提出的流量重路由能够获得更好的吞吐量、抖动和丢包率的网络性能。
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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