A dynamic on-line path computation algorithm for VNT configuration in GMPLS controlled multi-layer (Ethernet/WSON) network

A. Bukva, R. Casellas, R. Martínez, R. Muñoz
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引用次数: 3

Abstract

In this paper we propose a dynamic multi-layer path computation algorithm which favors the re-usage of FA LSPs (Forwarding Adjacency Label Switched Path) and virtual links over a new LSP establishment. To evaluate the algorithm, we explore several approaches for the dynamic configuration of the Virtual Network Topology (VNT) within a multi-layer network (Connection - Oriented Ethernet transport over a Wavelength Switched Optical Network) controlled by a unified GMPLS control plane. Specifically, three VNT approaches are compared: the virtual approach, where some lambda FA LSPs are pre-computed but not established (i.e., virtual TE links), the semi-dynamic approach, where a specific set of lambda FA LSPs is pre-established and advertised as Ethernet TE links (i.e., FA TE links) and the dynamic approach, where there are neither pre-established nor pre-computed lambda FA LSPs.
GMPLS控制多层(以太网/WSON)网络中VNT配置的动态在线路径计算算法
本文提出了一种动态多层路径计算算法,该算法有利于FA LSP(转发邻接标签交换路径)和虚拟链路的重用,而不是建立新的LSP。为了评估该算法,我们探索了由统一的GMPLS控制平面控制的多层网络(波长交换光网络上的面向连接的以太网传输)中虚拟网络拓扑(VNT)动态配置的几种方法。具体来说,比较了三种VNT方法:虚拟方法,其中一些lambda FA lsp是预先计算的,但没有建立(即虚拟TE链路);半动态方法,其中一组特定的lambda FA lsp是预先建立的,并作为以太网TE链路发布(即FA TE链路);动态方法,其中既没有预先建立也没有预先计算lambda FA lsp。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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