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Performance analysis of a scalable optical packet switching architecture

机译:可伸缩光分组交换架构的性能分析

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We carry out the analysis of a scalable switching architecture for all-optical packet switching networks. The underlying switch is based on a 2×2 two-stage multibuffer switched delay-line-based optical switching node. By incorporating an additional bypass line and employing a novel switch control strategy, the optical packet switching node can effectively resolve packet contentions, thus reducing the packet deflection probability substantially. In this work, we develop an exact queueing model from a discrete time Markov chain (DTMC) to evaluate the system performance under bursty, nonbursty, symmetric, and asymmetric traffic conditions. The accurate deflection probability and mean packet delay are obtained from this analytical model. Furthermore, we derive an approximate analysis to calculate the lower bound of deflection probability without the heavy computational complexities incurred by the exact analytical model. Simulation results are performed to confirm the validity of our analytic models
机译:我们对全光分组交换网络的可扩展交换体系结构进行了分析。底层交换机基于2×2两级基于多缓冲区交换延迟线的光交换节点。通过合并一条额外的旁路线并采用新颖的开关控制策略,光分组交换节点可以有效地解决分组争用,从而大大降低了分组偏转的可能性。在这项工作中,我们从离散时间马尔可夫链(DTMC)开发了一个精确的排队模型,以评估突发性,非突发性,对称和非对称流量条件下的系统性能。从该分析模型可以获得准确的偏转概率和平均数据包延迟。此外,我们导出了近似分析以计算偏转概率的下限,而没有精确分析模型引起的繁重计算复杂性。进行仿真结果以确认我们分析模型的有效性

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