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Efficient Distributed Bandwidth Management for MPLS Fast Reroute

机译:MPLS快速重路由的高效分布式带宽管理

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As service providers move more applications to their IP/MPLS (Multiple Protocol Label Switching ) backbone networks, rapid restoration upon failure becomes more and more crucial. Recently MPLS fast reroute has attracted lots of attention as it was designed to meet the needs of real-time applications, such as voice over IP. MPLS fast reroute achieves rapid restoration by computing and signaling backup label switched path (LSP) tunnels in advance and re-directing traffic as close to failure point as possible. To provide a guarantee of bandwidth protection, extra bandwidth has to be reserved on backup paths. Using path merging technique as described in IETF RFC 4090 only, the network is able to share some bandwidth on common links among backup paths of the same service LSP, i.e., so-called intra-sharing. But no solution is provided on how to share bandwidth among backup paths of different service LSPs, i.e., so-called inter-sharing. In this paper, we provide an efficient distributed bandwidth management solution. This solution allows bandwidth sharing among backup paths of the same and different service LSPs, i.e., both intra-sharing and inter-sharing, with a guarantee of bandwidth protection for any single node/link failure. We also propose an efficient algorithm for backup path selection with the associated signaling extensions for additional information distribution and collection. To evaluate our schemes, we compare them via simulation with the basic MPLS fast reroute proposal, IETF RFC 4090, on two networks. Our simulation results show that using our bandwidth management scheme can significantly reduce restoration overbuild from about 250% to about 100%, and our optimized backup path selection can further reduce restoration overbuild to about 60%.
机译:随着服务提供商将更多的应用程序移至其IP / MPLS(多协议标签交换)骨干网,出现故障时的快速恢复变得越来越重要。最近,由于MPLS快速重路由旨在满足IP语音等实时应用的需求,因此引起了广泛的关注。 MPLS快速重路由可通过预先计算和发信号通知备份标签交换路径(LSP)隧道并尽可能重定向到故障点附近的流量来实现快速恢复。为了保证带宽保护,必须在备份路径上保留额外的带宽。仅使用IETF RFC 4090中描述的路径合并技术,网络就可以在同一服务LSP的备份路径之间的公共链路上共享一些带宽,即所谓的内部共享。但是,没有提供关于如何在不同服务LSP的备份路径之间共享带宽的解决方案,即所谓的共享。在本文中,我们提供了一种有效的分布式带宽管理解决方案。该解决方案允许在相同和不同服务LSP的备份路径之间共享带宽,即共享内共享和共享间,并且保证针对任何单个节点/链路故障的带宽保护。我们还提出了一种用于备用路径选择的有效算法,该算法具有关联的信令扩展,用于其他信息分发和收集。为了评估我们的方案,我们通过仿真将其与两个网络上的基本MPLS快速重路由建议IETF RFC 4090进行了比较。我们的仿真结果表明,使用我们的带宽管理方案可以将还原过度构建从大约250%减少到大约100%,并且我们优化的备份路径选择可以进一步将还原过度构建减少到大约60%。

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