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Enhancement of blocking performance in all-optical WDM networks via wavelength reassignment and route deviation

机译:通过波长重新分配和路由偏差增强全光WDM网络中的阻塞性能

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This paper deals with the problem of improving the performance of all-optical Wavelength Division Multiplexing (WDM) networks in terms of blocking probability. Blocking in such network architecture is caused mainly by the so-called wavelength continuity constraint (wcc), which requires a provisioned lightpath to occupy the same wavelength on all the links along its route. To alleviate the effect of wcc on the blocking performance, a rerouting strategy is proposed. The main idea behind this strategy lies in ensuring the creation of wavelength-continuous routes for the connections that are blocked due to wcc. Particularly, the proposed rerouting strategy is built upon two main pillars, namely wavelength reassignment and route deviation. The former strives to keep the physical route followed by the lightpath intact, while the latter changes the route of the lightpath when wavelength reassignment proves to be ineffective. The performance of the rerouting strategy is studied through extensive simulations in the context of networks employing the least congested path (LCP) routing algorithm and the first-fit (FF) wavelength assignment strategy. The reported results show that the proposed rerouting strategy can guarantee significant enhancement in terms of blocking probability while achieving near-optimal performance for networks utilizing a small number of wavelengths per fiber.
机译:本文从阻塞概率的角度来解决提高全光波分复用(WDM)网络性能的问题。这种网络体系结构中的阻塞主要是由所谓的波长连续性约束(wcc)引起的,该波长连续性约束要求所设置的光路在沿其路径的所有链路上占据相同的波长。为了减轻wcc对阻塞性能的影响,提出了一种重路由策略。此策略的主要思想在于确保为由于wcc阻塞的连接创建波长连续的路由。特别地,所提出的重新路由策略建立在两个主要支柱上,即波长重新分配和路由偏差。前者努力保持光路所遵循的物理路径不变,而后者在波长重新分配被证明无效时改变光路的路径。在采用最小拥塞路径(LCP)路由算法和首次拟合(FF)波长分配策略的网络环境中,通过广泛的仿真研究了重路由策略的性能。报告的结果表明,所提出的重新路由策略可以在阻塞概率方面确保显着提高,同时为每根光纤使用少量波长的网络实现接近最佳的性能。

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