首页> 外文会议>Optical Network Design and Modeling (ONDM), 2010 >Fast and flexible optical path accommodation design based on Pre-planning and Reconfiguration in transparent optical mesh networks
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Fast and flexible optical path accommodation design based on Pre-planning and Reconfiguration in transparent optical mesh networks

机译:透明光网状网络中基于预规划和重新配置的快速灵活的光路容纳设计

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This paper proposes the Pre-planning and Reconfiguration of Wavelength (PRW) scheme which achieves a fast and flexible optical path accommodation design that deals with sequential traffic demand and addresses the Routing and Wavelength Assignment (RWA) problem. The proposed scheme comprises four key steps. First, in the pre-planning stage, Integer Linear Programming (ILP) is used to design routes and wavelengths according to the prediction for all traffic demand before requesting to establish an optical path. Second, the designed routes and wavelengths for each source and destination node pair are defined as the Wavelength-grouped Transmission Guaranteed Link (¿TGLs), and the resources necessary to establish an optical path in all the ¿TGLs are secured in the network operation stage. Third, in the network operation stage, the optical path is accommodated using the above secured route and wavelength. Fourth, when the traffic demand prediction is different from the actual traffic demand, routes and wavelengths are reconfigured according to the updated traffic demand prediction. This is done without interrupting the existing optical paths while minimizing any increase in the number of fibers when the ¿TGLs are modified. The PRW scheme achieves fast provisioning and flexibility in dealing with changes in the traffic demand prediction. This paper assesses the cost-effectiveness of the PRW scheme compared to the conventional post-planning scheme, which dynamically assigns a route and wavelength set to each optical path setup request.
机译:本文提出了波长的预规划和重新配置(PRW)方案,该方案实现了快速灵活的光路适应性设计,该方案可处理顺序的流量需求并解决路由和波长分配(RWA)问题。拟议的方案包括四个关键步骤。首先,在预规划阶段,在请求建立光路之前,使用整数线性规划(ILP)根据对所有流量需求的预测来设计路线和波长。其次,将每个源节点和目标节点对的设计路由和波长定义为“波长分组的传输保证链路”(TGL),并且在所有TGL中建立光路所需的资源是在网络运营阶段得到保护。第三,在网络操作阶段,使用上述保证的路由和波长来容纳光路。第四,当交通需求预测与实际交通需求不同时,根据更新的交通需求预测重新配置路线和波长。这样做是在不中断现有光路的情况下进行的,同时在修改TGL时最大程度地减少了光纤数量的增加。 PRW方案在处理流量需求预测中的变化时实现了快速配置和灵活性。与传统的后计划方案相比,本文评估了PRW方案的成本效益,后者可以为每个光路设置请求动态分配路由和波长。

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