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An analytical model for hypercubes in the presence of multiple time-scale bursty traffic

机译:存在多个时标突发流量的超立方体分析模型

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The interconnection network is one of the most critical architectural components in a parallel computer as any interaction between individual processors ultimately depends on its effectiveness. Recent studies have shown that traffic workloads in many parallel computation environments reveal burstiness over a number of time-scales, which has a considerable impact on network performance. Analytical modelling plays an important role in obtaining a clear understanding of the performance of interconnection networks with various design spaces and operating under different traffic conditions. This paper proposes a concise analytical model for the hypercube operating under multiple time-scale bursty traffic. The validity of the model is demonstrated by comparing analytical results to those obtained through simulation experiments of the actual system. The analytical model is then applied to evaluate the impact of multiple time-scale bursty traffic on the performance of hypercubes and investigate the effects of Hurst parameters of the traffic. (C) 2006 Elsevier B.V. All rights reserved.
机译:互连网络是并行计算机中最关键的体系结构组件之一,因为各个处理器之间的任何交互最终都取决于其有效性。最近的研究表明,在许多并行计算环境中的通信量工作负载在许多时间范围内都显示出突发性,这对网络性能具有相当大的影响。在清楚地了解具有各种设计空间并在不同流量条件下运行的互连网络的性能方面,分析模型起着重要作用。本文针对在多个时标突发流量下运行的超立方体提出了一个简洁的分析模型。通过将分析结果与通过实际系统的模拟实验获得的结果进行比较,证明了该模型的有效性。然后将分析模型应用于评估多个时标突发流量对超立方体性能的影响,并研究流量的赫斯特参数的影响。 (C)2006 Elsevier B.V.保留所有权利。

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