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Performance Analysis of an ATM Switch with Multiple Paths

机译:具有多路径的ATM交换机的性能分析

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An ATM switch based on multistage interconnection networks with multiple paths can support higher bandwidth than that of buffered networks with single path by passing multiple packets to the same destination simultaneously. These multiple packets are buffered in the output buffer of the destination. The performance of output buffer in the switch with multiple paths is closely dependent on the output traffic distribution, which is the packet arrival rate at each output link destined to a given output port. As the nonuniformity of the output traffic distribution becomes higher, the performance of the output buffer as like delay and packet loss probability gets better. In this paper, we propose a new self-routing switch architecture with multiple paths called Fly network and analyze the performance of the switching network and the output buffer focusing on the output traffic distribution. It is shown that the Fly network supports best throughput and latency of the output buffer by producing a high degree of the nonuniform output traffic distribution.
机译:通过将多个数据包同时传递到同一目的地,基于具有多路径的多级互连网络的ATM交换机可以支持比具有单路径的缓冲网络更高的带宽。这些多个数据包被缓冲在目标的输出缓冲区中。带有多路径的交换机中输出缓冲区的性能与输出流量分布密切相关,输出流量分布是到达指定给定输出端口的每个输出链路上的数据包到达率。随着输出流量分布的不均匀性变得越来越高,输出缓冲区的性能(如延迟和丢包率)会变得更好。在本文中,我们提出了一种新的具有多路径的自路由交换器架构,称为Fly网络,并针对交换流量和输出流量分布的输出缓冲区分析了其性能。结果表明,Fly网络通过产生高度的非均匀输出流量分布来支持最佳的吞吐量和输出缓冲区的延迟。

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