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A Wavelength Sharing and Assignment Heuristic to Minimize the Number of Wavelength Converters in Resilient WDM Networks

机译:波长共享和分配启发式,以最小化弹性WDM网络中的波长转换器的数量

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With the successful introduction of reconfigurable optical add-drop multiplexers (ROADMs) and related technologies, WDM networks are now growing in the number of optical nodes, wavelengths, and lambda services supported. In addition, shared path protection mechanisms - whereby lambda services are allowed to share protection wavelength channels - are possible at the optical (WDM) layer. Efficient strategies must be devised to both determine the set of services that must share a common protection wavelength channel and assign wavelengths to every service. One objective of these strategies is to minimize the total number of wavelength converters (WCs), which are required every time the wavelength continuity constraint cannot be met. This paper presents a scalable and efficient heuristic, whose goal is to minimize the number of WCs in resilient WDM networks supporting static sets of shared path protection lambda services. The heuristic comprises a set of polynomial algorithms that are executed sequentially to obtain a sub-optimal solution. In small size instances of the problem, the heuristic is compared against the optimal solution obtained from ILP formulation. For large size instances - tens of thousands of lambda services and hundreds of nodes - the heuristic yields an average number of WCs that is close to be linear in the number of services, despite the fact that the wavelength sharing factor increases.
机译:随着可重新配置的可重新配置光学添加多路复用器(ROADMS)和相关技术的成功介绍,WDM网络现在正在增长,光节点,波长和LAMBDA服务支持。此外,共享路径保护机制 - 允许Lambda服务共享保护波长信道 - 在光学(WDM)层中是可能的。必须设计有效的策略,以确定必须共享公共保护波长通道的服务集并将波长分配给每个服务。这些策略的一个目标是最小化每次无法满足波长连续性约束时所需的波长转换器(WCS)的总数。本文提出了一种可扩展且高效的启发式,其目标是最大限度地减少支持静态路径保护Lambda服务静态集的弹性WDM网络中的WCS数量。启发式包括一组多项式算法,其顺序地执行以获得子最优解。在小尺寸的问题的情况下,将启发式与ILP制剂获得的最佳溶液进行比较。对于大型实例 - 成千上万的Lambda服务和数百个节点 - 启发式产量在服务的数量中,平均WC在服务中接近线性,尽管是波长共享因子增加。

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