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Joint Static and Dynamic Traffic Scheduling in Data Center Networks

机译:数据中心网络中的静态和动态流量联合调度

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The advent and continued growth of large data centers has led to much interest in switch architectures that can economically meet the high capacities needed for interconnecting the thousands of servers in these data centers. Various multilayer architectures employing thousands of switches have been proposed in the literature. We make use of the observation that the traffic in a data center is a mixture of relatively static and rapidly fluctuating components, and develop a combined scheduler for both these components using a generalization of the load-balanced scheduler. The presence of the known static component introduces asymmetries in the ingress-egress capacities, which preclude the use of a load-balanced scheduler as is. We generalize the load-balanced scheduler and also incorporate an opportunistic scheduler that sends traffic on a direct path when feasible to enhance the overall switch throughput. Our evaluations show that this scheduler works very well despite avoiding the use of a central scheduler for making packet-by-packet scheduling decisions.
机译:大型数据中心的出现和持续增长引起了人们对交换机体系结构的极大兴趣,这种交换机体系结构可以经济地满足互连这些数据中心中成千上万台服务器所需的高容量。在文献中已经提出了采用数千个开关的各种多层架构。我们利用数据中心中的流量是相对静态且快速波动的组件的混合的观察结果,并使用负载均衡调度程序的一般化为这两个组件开发组合的调度程序。已知静态组件的存在会在入口-出口容量中引入不对称性,从而无法按原样使用负载平衡的调度程序。我们对负载均衡的调度程序进行了概括,并且还合并了机会调度程序,该调度程序在可行时会在直接路径上发送流量,以提高整体交换机的吞吐量。我们的评估表明,尽管避免使用中央调度程序来逐包调度决策,但该调度程序仍能很好地工作。

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