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An adaptive load balancing method for multiple paths using TCP flow statistics

机译:使用TCP流统计的多路径的自适应负载平衡方法

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We propose an adaptive load balancing method for multiple paths that makes it possible to achieve high TCP performance in each path. In conventional load balancing methods, link utilization is the main parameter to be balanced among multiple paths. However; when we take into account TCP-level performance, balancing traffic in terms of only link utilization may not always result in balancing TCP performance on each path. Our method utilizes flow statistics such as the number of active flows in each path, which is easy to measure at ingress nodes. By adaptively equalizing the average bandwidth used per active flow in each path, which is calculated by dividing the input rate to the path by the mean number of active flows, our method achieves fair and high TCP performance for each path. Unlike other methods, intermediate nodes between an ingress-egress pair are not required to perform traffic controls or measurements besides normal packet forwarding. We describe a load balancing method for adaptively equalizing the average bandwidth used per active flow on each path and show its effectiveness under any heterogeneous condition through simulation analysis.
机译:我们提出了一种自适应负载平衡方法,用于多个路径,使得可以在每个路径中实现高TCP性能。在传统的负载平衡方法中,链接利用率是多路径之间要平衡的主要参数。然而;当我们考虑到TCP级性能时,在仅链接利用率方面的平衡流量可能并不总是导致在每个路径上平衡TCP性能。我们的方法利用流程统计信息,例如每条路径中的活动流量的数量,这易于在入口节点上测量。通过自适应地均衡每个路径中的每个活动流使用的平均带宽,通过将输入速率除以通过均值流量的平均数量来计算,我们的方法为每个路径实现公平和高的TCP性能。与其他方法不同,除了正常分组转发之外,不需要进入输出对之间的中间节点来执行流量控制或测量。我们描述了一种负载平衡方法,用于自适应地均衡每条路径上每条活动流量使用的平均带宽,并通过模拟分析显示其在任何异构条件下的有效性。

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