A new analysis for wavelength translation in regular WDM networks

J. P. Lang, Emmanouel Varvarigos, V. Sharma
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引用次数: 2

Abstract

We present a new analysis of wavelength translation in regular all-optical WDM networks, that is simple, computationally inexpensive, and accurate for both low and high network loads. In a network with k wavelengths per link, we model the output link by an auxiliary M/M/k/k queueing system. We then obtain a closed-form expression for the probability P/sub succ/ that a session arriving at a node at a random time successfully establishes a connection from its source node to its destination node. Unlike previous analyses, which use the link independence blocking assumption, we account for the dependence between the acquisition of wavelengths on successive links of the session's path. Based on the success probability, we show that the throughput per wavelength increases superlinearly (as expected) as we increase the number of wavelengths per link; however the extent of this superlinear increase in throughput saturates rather quickly. This suggests some interesting possibilities for network provisioning in an all-optical network. We verify the accuracy of our analysis via simulations for the torus and hypercube networks.
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常规WDM网络中波长转换的新分析
我们提出了一种新的分析常规全光WDM网络中的波长转换的方法,该方法简单,计算成本低,并且对低负载和高负载的网络都准确。在每个链路有k波长的网络中,我们通过辅助M/M/k/k排队系统对输出链路进行建模。然后,我们得到了在随机时间到达节点的会话成功建立从源节点到目标节点连接的概率P/sub succ/的封闭表达式。与先前使用链路独立阻塞假设的分析不同,我们考虑了在会话路径的连续链路上获取波长之间的依赖性。基于成功概率,我们表明,随着我们增加每个链路的波长数量,每个波长的吞吐量会超线性地增加(如预期的那样);然而,这种吞吐量的超线性增长的程度很快就饱和了。这为全光网络中的网络配置提供了一些有趣的可能性。我们通过环面和超立方体网络的模拟验证了我们分析的准确性。
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