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Modelling and performance study of finite-buffered blocking multistage interconnection networks supporting natively 2-class priority routing traffic

机译:支持本地2类优先级路由流量的有限缓冲阻塞多级互连网络的建模和性能研究

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In this paper, we model, analyze and evaluate the performance of a 2-class priority architecture for finite-buffered multistage interconnection networks (MINs). The MIN operation modelling is based on a state diagram, which includes the possible MIN states, transitions and conditions under which each transition occurs. Equations expressing state and transition probabilities are subsequently given, providing a formal model for evaluating the MIN's performance. The proposed architecture's performance is subsequently analyzed using simulations; operational parameters, including buffer length, MIN size, offered load and ratios of high priority packets which are varied across experiments to gain insight on how each parameter affects the overall MIN performance. The 2-class priority MIN performance is compared against the performance of single priority MINs, detailing the performance gains and losses for packets of different priorities. Performance is assessed by means of the two most commonly used factors, namely packet throughput and packet delay, while a performance indicator combining both individual factors is introduced, computed and discussed. The findings of this study can be used by network and interconnection system designers in order to deliver efficient systems while minimizing the overall cost. The performance evaluation model can also be applied to other network types, providing the necessary data for network designers to select optimal values for network operation parameters.
机译:在本文中,我们对有限缓冲多级互连网络(MIN)的2类优先级体系结构进行建模,分析和评估。 MIN操作建模基于状态图,该状态图包括可能的MIN状态,转换以及每个转换发生的条件。随后给出了表示状态和转移概率的方程式,为评估MIN的性能提供了一个正式的模型。所提议的体系结构的性能随后将通过仿真进行分析。操作参数包括缓冲区长度,MIN大小,提供的负载和高优先级数据包的比率,这些参数在实验中会有所不同,以深入了解每个参数如何影响整体MIN性能。将2类优先级MIN的性能与单优先级MIN的性能进行比较,详细说明了不同优先级的数据包的性能得失。通过两个最常用的因素来评估性能,即数据包吞吐量和数据包延迟,同时介绍,计算和讨论结合了两个因素的性能指标。网络和互连系统设计人员可以使用此研究的结果,以便在最小化总体成本的同时提供高效的系统。性能评估模型还可以应用于其他网络类型,为网络设计人员提供必要的数据,以为网络操作参数选择最佳值。

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