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Software defined networking-based traffic engineering for data center networks

机译:数据中心网络的基于软件定义的基于网络的流量工程

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Today's Data Center Networks (DCNs) contain tens of thousands of hosts with significant bandwidth requirements as the needs for cloud computing, multimedia contents, and big data analysis are increasing. However, the existing DCN technologies accompany the following two problems. First, power consumptions of a DCN is constant regardless of the utilization of network resources. Second, due to a static routing scheme, a few links in DCNs are experiencing congestions while other majority links are being underutilized. To overcome these limitations of the current DCNs, we propose a Software Defined Networking (SDN)-based Traffic Engineering (TE), which consists of optimal topology composition and traffic load balancing. We can reduce the power consumptions of the DCN by turning off links and switches that are not included in the optimal subset topology. To diminish network congestions, the traffic load balancing distributes ever-changing traffic demands over the found optimal subset topology. Simulation results revealed that the proposed SDN-based TE approach can reduce power consumptions of a DCN about 41% and Maximum Link Utilization (MLU) about 60% on average in comparison with a static routing scheme.
机译:随着对云计算,多媒体内容和大数据分析的需求不断增长,当今的数据中心网络(DCN)包含数以万计的主机,这些主机具有显着的带宽需求。但是,现有的DCN技术伴随以下两个问题。首先,与网络资源的利用无关,DCN的功耗是恒定的。其次,由于采用静态路由方案,DCN中的一些链路出现了拥塞,而其他多数链路却未得到充分利用。为了克服当前DCN的这些限制,我们提出了一种基于软件定义网络(SDN)的流量工程(TE),其中包括最佳的拓扑组成和流量负载平衡。我们可以通过关闭最佳子集拓扑中未包含的链路和开关来减少DCN的功耗。为了减少网络拥塞,流量负载平衡将不断变化的流量需求分配到找到的最佳子集拓扑上。仿真结果表明,与静态路由方案相比,基于SDN的TE方法可将DCN的功耗平均降低约41%,最大链路利用率(MLU)降低约60%。

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