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Evaluating the impact of SDN-induced frequent route changes on TCP flows

机译:评估SDN诱导的频繁路径变化对TCP流的影响

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Traffic engineering technologies such as MPLS have been proposed to adjust the paths of data flows according to network availability. Although the time interval between traffic optimisations is often on the scale of hours or minutes, modern SDN techniques enable reconfiguring the network more frequently. It is argued, however, that changing the paths of TCP flows too often could severely impact their performance by incurring packet loss and reordering. This work analyses and evaluates the impact of frequent route changes on the performance of TCP flows. Experiments carried out on a network testbed show that rerouting a flow can affect its throughput when reassigning it a path either longer or shorter than the original path. Packet reordering has a negligible impact when compared to the increase of RTT. Moreover, constant rerouting influences the performance of the congestion control algorithm. Designed to assess the limits on SDN-induced reconfiguration, a scenario where the traffic is rerouted every 0.1s demonstrates that the throughput can be as low as 35% of that achieved without rerouting.
机译:已经提出了根据网络可用性调整数据流量的交通工程技术。虽然流量优化之间的时间间隔通常在小时或分钟的比例,但是现代SDN技术能够更频繁地重新配置网络。然而,据称,改变TCP流量的路径通常可能会通过产生数据包丢失和重新排序来严重影响其性能。这项工作分析并评估了频繁路径变化对TCP流动性能的影响。在网络测试平台上进行的实验表明,在将其重新分配比原始路径更长或更短的路径时,重新排出流量会影响其吞吐量。与RTT的增加相比,数据包重新排序具有可忽略的影响。此外,持续重新路由影响拥塞控制算法的性能。旨在评估SDN引起的重新配置的限制,每0.1S重新排出流量的场景,演示了吞吐量可以低至35 %而无需重新路由。

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