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Analysis of nonblocking ATM switches with multiple input queues

机译:分析具有多个输入队列的无阻塞ATM交换机

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摘要

An analytical model for the performance analysis of a multiple input queued asynchronous transfer mode (ATM) switch is presented. The interconnection network of the ATM switch is internally nonblocking and each input port maintains a separate queue of cells for each output port. The switch uses parallel iterative matching (PIM) to find the maximal matching between the input and output ports of the switch. A closed-form solution for the maximum throughput of the switch under saturated conditions is derived. It is found that the maximum throughput of the switch exceeds 99% with just four iterations of the PIM algorithm. Using the tagged input queue approach, an analytical model for evaluating the switch performance under an independent identically distributed Bernoulli traffic with the cell destinations uniformly distributed over all output ports is developed. The switch throughput, mean cell delay, and cell loss probability are computed from the analytical model. The accuracy of the analytical model is verified using simulation.
机译:提出了一种用于多输入排队异步传输模式(ATM)交换机性能分析的分析模型。 ATM交换机的互连网络在内部是无阻塞的,每个输入端口为每个输出端口维护一个单独的信元队列。交换机使用并行迭代匹配(PIM)来查找交换机的输入和输出端口之间的最大匹配。得出了在饱和条件下实现交换机最大吞吐量的封闭式解决方案。发现仅通过PIM算法的四次迭代,交换机的最大吞吐量就超过了99%。使用标记的输入队列方法,开发了一种分析模型,用于评估在独立均匀分布的Bernoulli通信量下且单元目的地均匀分布在所有输出端口上的交换机性能。从分析模型计算出交换机的吞吐量,平均信元延迟和信元丢失概率。使用仿真验证了分析模型的准确性。

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