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Dynamic routing and wavelength assignment in the presence of wavelength conversion for all-optical networks

机译:对于全光网络,在存在波长转换的情况下进行动态路由和波长分配

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Blocking probability has been one of the key performance indexes in the design of wavelength-routed all-optical WDM networks. Existing research has demonstrated that an effective Routing and Wavelength Assignment (RWA) algorithm and wavelength conversion are two primary vehicles for improving the blocking performance. However, these two issues have largely been investigated separately; in particular the existing RWA algorithms have seldom considered the presence of wavelength conversion. In this paper, we firstly demonstrate that the existing dynamic RWA algorithms do not work well in the presence of wavelength conversion as they usually only take into account the current traffic, and do not explicitly consider the route lengths. We then propose a weighted least-congestion routing and first-fit wavelength assignment (WLCR-FF) algorithm that considers both the current traffic load and the route lengths jointly. We further introduce an analytical model that can evaluate the blocking performance for WLCR algorithm. We carry out extensive numerical studies over typical topologies including ring, mesh-torus, and the 14-node NSFNET; and compare the performance of WLCR-FF with a wide variety of existing routing algorithms including static routing, fixed-alternate routing and least-loaded routing. The results conclusively demonstrate that the proposed WLCR-FF algorithm can achieve much better blocking performance in the presence of sparse or/and full wavelength conversion.
机译:阻塞概率已成为波长路由全光WDM网络设计中的关键性能指标之一。现有研究表明,有效的路由和波长分配(RWA)算法以及波长转换是提高阻塞性能的两个主要手段。但是,这两个问题已在很大程度上进行了单独研究。特别是,现有的RWA算法很少考虑波长转换的存在。在本文中,我们首先证明了现有的动态RWA算法在存在波长转换的情况下不能很好地工作,因为它们通常仅考虑当前的流量,而没有明确考虑路由长度。然后,我们提出了一种加权最小拥塞路由和首次拟合波长分配(WLCR-FF)算法,该算法共同考虑了当前的流量负载和路由长度。我们进一步介绍了一种可以评估WLCR算法的阻塞性能的分析模型。我们对包括环形,网格环形和14节点NSFNET在内的典型拓扑进行了广泛的数值研究。并将WLCR-FF的性能与各种现有的路由算法进行比较,包括静态路由,固定替代路由和最小负载路由。结果最终证明,所提出的WLCR-FF算法在稀疏或全波长转换的情况下可以实现更好的阻断性能。

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