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Survivable Design of Reconfigurable MPLS VPN Networks

机译:可重新配置的MPLS VPN网络的可生存设计

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MPLS has become an increasingly common technology for guaranteed transport services for carrying customer traffic. We consider the survivable design problem from the perspective of an MPLS VPN network provider where the data rate required is dynamically configurable based on customers' traffic demands. Network optimization formulations for global design and end-to-end fast reroute design are presented. For the global design model, we present two variations: global sequential redesign and selective sequential redesign. Through computational work, we observe that as networks get larger, the relative cost of making that network survivable goes down. Furthermore, as a network of a given number of nodes increases its connectivity, the cost of survivability goes down. Finally, the global sequential redesign and selective sequential redesign methods produce survivable design costs that are comparable, while they are approximately 28% less expensive than the end-to-end fast reroute design approach for survivability.
机译:MPLS已成为携带客户交通的保证运输服务的越来越常见的技术。我们从MPLS VPN网络提供商的角度考虑了可生存的设计问题,其中所需的数据速率是根据客户的业务需求动态配置的。介绍了全局设计和端到端快速REROUTE设计的网络优化配方。对于全局设计模型,我们呈现了两个变体:全局顺序重新设计和选择性顺序重新设计。通过计算工作,我们观察到,随着网络变得更大,使该网络无法生存的相对成本下降。此外,由于给定数量的节点的网络增加了其连接,因此生存性成本下降。最后,全局顺序重新设计和选择性顺序重新设计方法产生可具有可比性的设计成本,而它们比最终到最终快速REROUTE设计方法昂贵约28%。

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