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A hybrid approach for provisioning sub-wavelength requests in IP-over-WDM networks

机译:在WDM IP网络中提供子波长请求的混合方法

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This paper deals with the provisioning of sub-wavelength requests in IP-over-WDM networks. Traditionally, these requests are either provisioned by setting up a lightpath switched transparently all the way from the source to the destination (routing and wavelength assignment - RWA - provisioning), or by using one or more existing lightpaths with enough residual bandwidth to time-multiplex the new traffic. In this work, an interconnection model between the IP and optical layers that allows all control information to be maintained under a single administrative domain (namely, the optical domain) is assumed. This enables hybrid provisioning, which makes use of existing lightpaths and lightpaths to be set up. Three hybrid algorithms are introduced, namely the shortest path first-fit (SPFF), the shortest-path exhaustive search (SPES) and network-wide exhaustive search (NetWES), each differing in the way in which the hybrid paths are sought. Simulation results indicate that all three perform better than the conventional overlay sequential routing, and NetWES performs better than the rest.
机译:本文涉及在IP-WDM网络中提供子波长请求。传统上,这些请求是通过从源从源(路由和波长分配 - RWA - 供应)透明地切换的,或者通过使用足够的残余带宽进行时间多路复用的一个或多个现有光路来配置这些请求新的流量。在这项工作中,假设允许允许在单个管理域(即,光域)下保持所有控制信息的IP和光学层之间的互连模型。这使得混合配置能够使用现有的光路和光路进行设置。引入了三种混合动力算法,即最短路径第一拟合(SPFF),最短路径详尽的搜索(SPES)和网络范围的详尽搜索(NETWES),每个都在寻求混合路径的方式不同。仿真结果表明,所有三个都比传统的叠加顺序路由更好,而NetWes比其余部分更好地执行。

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