基于MPLS网络的多vpn拓扑设计

A. Srikitja, D. Tipper
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引用次数: 0

摘要

通过在核心IP骨干网上部署MPLS,服务提供商可以构建具有QoS保证的虚拟专用网(vpn)来支持各种类型的服务。如何有效地映射服务提供商网络中多个vpn的逻辑布局是一个重要且具有挑战性的流量工程过程。在MPLS网络中使用sink-tree(多点对点)路由路径使得VPN设计问题不同于传统的设计方法,传统的设计方法通常选择全网格的点对点路径。使用sink-tree路径的明显好处是减少了标签交换路径的数量,并且由于网络中带宽聚合的粒度更大而节省了带宽。本文将利用sink-tree路由的MPLS上多个vpn的设计表述为一个混合整数规划问题,以同时找到vpn的逻辑拓扑及其维度,以承载来自不同用户的多业务、多小时的vpn流量。这样的问题表述产生NP-hard复杂性。在这里,我们提出了一种启发式算法,旨在通过选择一个小而好的可行下沉树路径候选集来解决优化问题,从而扩展VPN设计问题。数值结果表明了该方法的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topological design of multiple VPNs over MPLS network
With the deployment of MPLS over a core IP backbone, it is possible for a service provider to built Virtual Private Networks (VPNs) supporting various classes of services with QoS guarantees. Efficiently mapping the logical layout of multiple VPNs over a service provider network is an important and challenging traffic engineering procedure. The use of sink-tree (multipoint-to-point) routing paths in a MPLS network makes the VPN design problem different from traditional design approaches where a full-mesh of point-to-point paths is often the choice. The clear benefits of using sink-tree paths are the reduction in the number of label switch paths and bandwidth saving due to larger granularities of bandwidth aggregation within the network. In this paper, the design of multiple VPNs over MPLS, using sink-tree routing, is formulated as a mixed integer programming problem to simultaneously find VPNs logical topologies and their dimensions to carry multi-service, multi-hour VPNs traffic from various customers. Such a problem formulation yields an NP-hard complexity. Here, we propose a heuristic aiming to scale the VPN design problem by choosing a small-but-good candidate set of feasible sink-tree paths to solve the optimization problem over. Numerical results are given showing the advantages of the proposed approach.
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