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Blocking and nonblocking multirate Clos switching networks

机译:有阻塞和无阻塞多速率Clos交换网络

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This paper investigates in detail the blocking and nonblocking behavior of multirate Clos switching networks at the connection/virtual connection level. The results are applicable to multirate circuit and fast-packet switching systems. Necessary and sufficient nonblocking conditions are derived analytically. Based on the results, an optimal bandwidth partitioning scheme is proposed to reduce switch complexity while maintaining the nonblocking property. The blocking behavior of blocking switches supporting multicast connections is investigated by means of simulation. We propose a novel simulation model that filters out external blocking events without distorting the bandwidth and fanout (for multicasting) distributions of connection requests. In this way, the internal blocking statistics that truly reflect the switch performance can be gathered and studied. Among many simulation results, we have shown that for point-to-multipoint connections, a heuristic routing policy that attempts to build a narrow multicast tree can have relatively low blocking probabilities compared with other routing policies. In addition, when small blocking probability can be tolerated, our results indicate that situations with many large-fanout connection requests do not necessarily require a switch architecture of higher complexity compared to that with only point-to-point requests.
机译:本文详细研究了在连接/虚拟连接级别上多速率Clos交换网络的阻塞和非阻塞行为。结果适用于多速率电路和快速分组交换系统。通过分析得出必要和充分的非阻塞条件。根据结果​​,提出了一种最优的带宽划分方案,以降低交换机的复杂性,同时又保持非阻塞性。通过仿真研究了支持多播连接的阻塞交换机的阻塞行为。我们提出了一种新颖的仿真模型,该模型可以过滤掉外部阻塞事件,而不会扭曲连接请求的带宽和扇出(用于多播)分布。这样,可以收集和研究真正反映开关性能的内部阻塞统计数据。在许多仿真结果中,我们已经表明,对于点对多点连接,与其他路由策略相比,尝试构建狭窄的多播树的启发式路由策略的阻塞概率相对较低。另外,当可以容忍较小的阻塞概率时,我们的结果表明,与仅具有点对点请求的情况相比,具有许多大扇出连接请求的情况不一定需要具有更高复杂性的交换机体系结构。

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