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A fast parallel‐tree switch architecture for ATM networks

机译:适用于ATM网络的快速并行树交换机体系结构

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In this paper we present a novel fast packet switch architecture based on Banyan interconnection networks, called parallel-tree Banyan switch fabric (PTBSF). It consists of parallel Banyans (multiple outlets) arranged in a tree topology. The packets enter at the topmost Banyan. Internal conflicts are eliminated by using a conflict-free 3 × 4 switching element which distributes conflicting cells over different Banyans. Thus, cell loss may occur only at the lowest Banyan. Increasing the number of Banyans leads to a noticeable decrease in cell loss rate. The switch can be engineered to provide arbitrarily high throughput and low cell loss rate without the use of input buffering or cell pre-processing. The performance of the switch is evaluated analytically under uniform traffic load and by simulation, under a variety of asynchronous transfer mode (ATM) traffic loads. Compared to other proposed architectures, the switch exhibited stable and excellent performance with respect to cell loss and switching delay for all studied conditions as required by ATM traffic sources. The advantages of PTBSF are modularity, regularity, self-routing, low processing overhead, high throughput and robustness, under a variety of ATM traffic conditions. © 1998 John Wiley & Sons, Ltd.
机译:在本文中,我们提出了一种基于榕树互连网络的新型快速分组交换体系结构,称为并行树榕树交换结构(PTBSF)。它由以树形拓扑结构排列的平行榕树(多个出口)组成。数据包进入最上面的榕树。通过使用无冲突的3×4开关元件消除了内部冲突,该开关元件将冲突的单元分布在不同的榕树上。因此,仅在最低榕树上可能发生细胞损失。榕树数量的增加导致细胞损失率的明显下降。可以将交换机设计为任意提供高吞吐量和低信元丢失率,而无需使用输入缓冲或信元预处理。在各种流量负载下,通过模拟分析评估交换机的性能,并通过仿真在各种异步传输模式(ATM)流量负载下进行评估。与其他提议的体系结构相比,对于ATM流量源所要求的所有研究条件,该交换机在信元丢失和切换延迟方面均表现出稳定且出色的性能。在各种ATM流量条件下,PTBSF的优点是模块化,规则性,自路由,低处理开销,高吞吐量和鲁棒性。 ©1998 John Wiley&Sons,Ltd.

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