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A new approach for routing and wavelength assignment for permanent and reliable wavelength paths in wide all-optical WDM networks

机译:宽全光WDM网络中用于永久和可靠波长路径的路由和波长分配的新方法

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摘要

This article proposes a new approach for routing and wavelength assignment (RWA) for permanent and reliable wavelength paths (WP) in wide all-optical WDM networks with wavelength continuity constraint. Given a number of available wavelengths on each optical fiber, for each simple link failure of the network, we seek to maximize the number of satisfied requests for connections. This is known as RWAP problem. In our algorithm, called RWA with Minimum Loaded Link for Permanent and Reliable wavelength paths (MLL-PR), routing is based on the search for the optimal path while trying to minimize the maximum load on the links of the network in order to minimize the maximum link capacity and then minimize the number of dropped lightpaths after any link failure. The wavelength assignment is based on a graph coloring method using tabu-search. A series of experiments using two well-known networks (ARPANET and NSFNET) have been carried out in order to evaluate the performance of our approach, in terms of the number of blocked demands, for different failure scenarios. Generally, our results are better than those provided by the current solving approaches taken as reference.
机译:本文提出了一种新的路由和波长分配(RWA)方法,用于具有波长连续性约束的宽全光WDM网络中的永久和可靠波长路径(WP)。给定每条光纤上的多个可用波长,对于网络的每个简单链路故障,我们力求使满足连接请求的数量最大化。这称为RWAP问题。在我们称为永久和可靠波长路径的最小负载链路的RWA算法(MLL-PR)中,路由基于对最佳路径的搜索,同时尝试最小化网络链路上的最大负载以最小化最大链路容量,然后在任何链路故障后最小化掉光路径的数量。波长分配基于使用禁忌搜索的图形着色方法。为了评估针对不同故障场景的阻塞需求数量,我们已经使用两个著名的网络(ARPANET和NSFNET)进行了一系列实验,以评估我们方法的性能。通常,我们的结果要优于目前作为参考的解决方法所提供的结果。

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