Performance analysis of WDM OPS with a space priority mechanism under self-similar variable length packet traffic

Sampath K. Kumar, M. R. Perati, T. Adilakshmi
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引用次数: 1

Abstract

In this paper, we study the switching performance of WDM optical packet switch (OPS) with a space priority mechanism, under self-similar variable length packet traffic. In this study, we model WDM OPS equipped with tunable wavelength converters as a multi-server space priority queuing system, MMPP/M/W/C. In our model, packets arriving at WDM OPS are assumed to follow Markov modulated Poisson process (MMPP) that emulates self-similar traffic. Service times are exponentially distributed to cope with variable packet length. The space priority mechanism is adapted to schedule delay sensitive real time (high priority) traffic and delay-tolerant non-real time (low priority) traffic. Simulation results are more promising and also confirm, space priority mechanism not only can maintain the Quality of Service (QoS) for the real time traffic but also can provide the optimum utilization of the capacity for non-real time traffic.
自相似变长分组流量下具有空间优先级机制的WDM OPS性能分析
本文研究了具有空间优先级机制的WDM光分组交换机(OPS)在自相似变长分组流量下的交换性能。在本研究中,我们将配备可调谐波长转换器的WDM OPS建模为多服务器空间优先排队系统(MMPP/M/W/C)。在我们的模型中,假设到达WDM OPS的数据包遵循模拟自相似流量的马尔可夫调制泊松过程(MMPP)。服务时间呈指数分布,以应对不同的数据包长度。空间优先级机制适用于对延迟敏感的实时(高优先级)流量和对延迟容忍的非实时(低优先级)流量的调度。仿真结果表明,空间优先级机制不仅可以保证实时业务的服务质量(QoS),而且可以为非实时业务提供最优的容量利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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