具有时空突发流量的互联网络性能建模与分析

G. Min, Yulei Wu, M. Ould-Khaoua, H. Yin, Keqiu Li
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引用次数: 5

摘要

k元n立方具有n维网格结构,每维有k个节点,已成为互连网络的常用拓扑结构。在假设消息目的地均匀分布在所有网络节点上,并且消息到达遵循非突发泊松过程的情况下,k元n-立方体的分析模型已经被广泛报道。最近的研究令人信服地表明,互联网络中的流量模式在空间域(即消息目的地的不均匀分布)和时间域(即消息到达过程的突发性)上都表现出突发性。为了捕捉真实流量模式的特征,全面了解互联网络的性能行为,本文提出了一个新的时空突发流量下的k元n立方分析模型。通过实际系统的大量仿真实验,验证了模型的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Modelling and Analysis of Interconnection Networks with Spatio-Temporal Bursty Traffic
The k-ary n-cube which has an n-dimensional grid structure with k nodes in each dimension has been a popular topology for interconnection networks. Analytical models for k- ary n-cubes have been widely reported under the assumptions that the message destinations are uniformly distributed over all network nodes and the message arrivals follow a nonbursty Poisson process. Recent studies have convincingly demonstrated that the traffic pattern in interconnection networks reveals the bursty nature in the both spatial domain (i.e., non-uniform distribution of message destinations) and temporal domain (i.e., bursty message arrival process). With the aim of capturing the characteristics of the realistic traffic pattern and obtaining a comprehensive understanding of the performance behaviour of interconnection networks, this paper presents a new analytical model for k-ary n-cubes in the presence of spatio-temporal bursty traffic. The accuracy of the model is validated through extensive simulation experiments of an actual system.
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