利用主路径共享带宽实现MPLS网络保护路由

Faisal Aslam, Saqib Raza, Z. A. Uzmi, Young-Chon Kim
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引用次数: 7

摘要

在MPLS等标签交换网络中,保护路由是在主路径路由的同时计算和建立备份路径。以前已经证明,如果两个或多个备份路径永远不会同时激活,则可以沿着公共链路共享带宽。备份路径之间的这种共享减少了带宽预留,从而提高了网络上可容纳的路径请求数量的性能(Aslam等人,2005)。我们提出了一个新颖的想法,即备份路径也可以与某些主路径共享带宽,从而进一步减少网络上的总体带宽预留。这将导致网络上容纳更多的路径请求。任何保护路由框架都可以与主路径共享。为了证明这种共享,我们以NPP保护路由框架为例(Aslam等人,2005)。我们对NPP框架进行了增强,以利用与主路径的共享。对于增强的NPP框架,在各种网络上的仿真结果证实,与主路径共享确实会带来更好的网络利用率。这种性能的提高是通过有限的本地状态信息实现的,并且不需要任何额外的路由或信令开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bandwidth Sharing with Primary Paths for Protection Routing in an MPLS Network
In label-switched networks such as MPLS, protection routing involves computing and setting up the backup paths at the same time when the primary paths are routed. It has previously been shown that two or more backup paths may share bandwidth along common links if such backup paths will never be activated simultaneously. Such sharing between the backup paths leads to reduced bandwidth reservations and, hence improved performance in terms of number of path requests that can be accommodated on the network (Aslam et al., 2005). We present a novel idea that backup paths may also share bandwidth with certain primary paths, thereby further reducing the overall bandwidth reservations on the network. This results in even more path requests being accommodated on the network. Sharing with primary paths is possible with any protection routing framework. To demonstrate this sharing, we use the NPP protection routing framework as an example (Aslam et al., 2005). We provide the enhancements to the NPP framework needed to exploit sharing with the primary paths. For the enhanced NPP framework, simulation results on various networks confirm that sharing with primary paths indeed results in better network utilization. This increased performance is achieved with bounded local state information and without requiring any additional routing or signaling overhead.
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