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Path-protection routing and wavelength assignment (RWA) in WDM mesh networks under duct-layer constraints

机译:管道层约束下WDM网状网络中的路径保护路由和波长分配(RWA)

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This study investigates the problem of fault management in a wavelength-division multiplexing (WDM)-based optical mesh network in which failures occur due to fiber cuts. In reality, bundles of fibers often get cut at the same time due to construction or destructive natural events, such as earthquakes. Fibers laid down in the same duct have a significant probability to fail at the same time. When path protection is employed, we require the primary path and the backup path to be duct-disjoint, so that the network is survivable under single-duct failures. Moreover, if two primary paths go through any common duct, their backup paths cannot share wavelengths on common links. This study addresses the routing and wavelength-assignment problem in a network with path protection under duct-layer constraints. Off-line algorithms for static traffic is developed to combat single-duct failures. The objective is to minimize total number of wavelengths used on all the links in the network. Both integer linear programs and a heuristic algorithm are presented and their performance is compared through numerical examples.
机译:这项研究调查了基于波分多路复用(WDM)的光网状网络中的故障管理问题,其中由于光纤切断而导致故障。实际上,由于构造或破坏性自然事件(例如地震),经常会同时切断纤维束。铺设在同一导管中的光纤很有可能同时发生故障。当使用路径保护时,我们要求主路径和备用路径是不相交的,以便在单线故障下网络可以生存。此外,如果两条主路径通过任何公共管道,则它们的备用路径将无法共享公共链路上的波长。这项研究解决了在管道层约束下具有路径保护的网络中的路由和波长分配问题。开发了用于静态流量的离线算法来应对单通道故障。目的是最小化网络中所有链路上使用的波长总数。给出了整数线性程序和启发式算法,并通过数值示例比较了它们的性能。

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