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Performance analysis of large multicast switches with multicast virtual output queues

机译:具有组播虚拟输出队列的大型组播交换机的性能分析

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In multicast switches, the accommodation of multicast traffic in multiple queues per input buffer reduces the throughput degradation caused by head-of-line (HOL) blocking. Such an arrangement, called multicast virtual output queuing (MC-VOQ), is very promising in theory but can only be implemented in practice with heavy approximation. Complete avoidance of the HOL blocking problem would in fact require a distinct queue for each fanout set possible, leading to an exponential growth of the number of queues needed with the switch size. If only a limited number of queues can be used per input buffer, criteria must be identified for setting the number of queues, for associating the fanout sets with the individual queues, and for scheduling the transmission of packets out of the queues. This paper presents an analytical model for the investigation of saturation throughput and packet delay in MC-VOQ multicast switches. The model relies on the assumption of Poisson-distributed uniform input traffic and random queuing and scheduling policies. Extensive simulation experiments validate the results of the analysis for large switch sizes.
机译:在多播交换机中,将多播流量容纳在每个输入缓冲区的多个队列中,可减少由行头(HOL)阻塞引起的吞吐量下降。这种安排称为多播虚拟输出排队(MC-VOQ),在理论上非常有前途,但只能在实践中以近似的方式实现。实际上,要完全避免HOL阻塞问题,就可能需要为每个扇出集设置不同的队列,从而导致交换机大小所需的队列数量呈指数增长。如果每个输入缓冲区只能使用有限数量的队列,则必须确定标准以设置队列数量,将扇出集与各个队列相关联以及调度数据包从队列中传输出去。本文提出了一个分析模型,用于研究MC-VOQ多播交换机中的饱和吞吐量和数据包延迟。该模型基于Poisson分布的统一输入流量以及随机排队和调度策略的假设。大量的仿真实验验证了大尺寸开关的分析结果。

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