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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Throughput analysis, optimal buffer allocation, and traffic imbalance study of a generic nonblocking packet switch
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Throughput analysis, optimal buffer allocation, and traffic imbalance study of a generic nonblocking packet switch

机译:通用无阻塞数据包交换机的吞吐量分析,最佳缓冲区分配和流量不平衡研究

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摘要

A general model is presented to study the performance of a family of space-domain packet switches, implementing both input and output queuing and varying degrees of speedup. Based on this model, the impact of the speedup factor on the switch performance is analyzed. In particular, the maximum switch throughput, and the average system delay for any given degree of speedup are obtained. The results demonstrate that the switch can achieve 99% throughput with a modest speedup factor of four. Packet blocking probability for systems with finite buffers can also be derived from this model, and the impact of buffer allocation on blocking probability is investigated. Given a fixed buffer budget, this analysis obtains an optimal placement of buffers among input and output ports to minimize the blocking probability. The model is also extended to cover a nonhomogeneous system, where traffic intensity at each input varies and destination distribution is not uniform. Using this model, the effect of traffic imbalance on the maximum switch throughput is studied. It is seen that input imbalance has a more adverse effect on throughput than output imbalance.
机译:提出了一个通用模型来研究一系列空域分组交换机的性能,同时实现输入和输出排队以及不同程度的加速。基于该模型,分析了加速因子对开关性能的影响。特别是,对于任何给定的加速程度,可以获得最大的交换机吞吐量和平均系统延迟。结果表明,该交换机可以以99%的适度加速因子实现99%的吞吐量。带有有限缓冲区的系统的数据包阻塞概率也可以从该模型中得出,并研究缓冲区分配对阻塞概率的影响。给定固定的缓冲区预算,此分析将在输入和输出端口之间获得缓冲区的最佳放置,以最大程度地降低阻塞可能性。该模型还扩展为涵盖非均匀系统,其中每个输入的流量强度会发生变化,目的地分布也不均匀。使用该模型,研究了流量不平衡对最大交换机吞吐量的影响。可以看出,输入不平衡对吞吐量的负面影响要大于输出不平衡。

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