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Dynamic Path Management with Resilience Constraints under Multiple Link Failures in MPLS/GMPLS Networks

机译:MPLS / GMPLS网络中多链路故障下具有弹性约束的动态路径管理

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Most previous research on MPLS/GMPLS recovery management has focused on efficient routing or signaling methods from single failures. However, multiple simultaneous failures may occur in large-scale complex virtual paths of MPLS/GMPLS networks. In this paper, we present a dynamic MPLS/GMPLS path management strategy in which the path recovery mechanism can rapidly find an optimal backup path which satisfies the resilience constraints under multiple link failure occurrences. We derived the conditions to test the existence of resilience-guaranteed backup path, and developed a decomposition theorem and backup path construction algorithm for the fast restoration of resilience-guaranteed backup paths, for the primary path with an arbitrary configuration. Finally, simulation results are presented to evaluate the performance of the proposed approach.
机译:以前有关MPLS / GMPLS恢复管理的大多数研究都集中在单一故障的有效路由或信令方法上。但是,在MPLS / GMPLS网络的大规模复杂虚拟路径中可能会发生多个同时失败。在本文中,我们提出了一种动态MPLS / GMPLS路径管理策略,其中,路径恢复机制可以快速找到满足多条链路故障情况下的弹性约束的最佳备份路径。我们推导了测试弹性保证备份路径是否存在的条件,并针对任意配置的主路径,开发了分解定理和备份路径构建算法,以快速恢复弹性保证备份路径。最后,通过仿真结果评估了该方法的性能。

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