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Design and Implementation of a Stateful PCE-Based Unified Control and Management Framework for Carrier-Grade MPLS-TP Networks

机译:基于状态PCE的电信级MPLS-TP网络统一控制和管理框架的设计与实现

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This paper presents the design and evaluation of a generalized topology discovery, operational monitoring, and provisioning (G-TOP) controller for a carrier-grade transport network. The G-TOP controller is a vendor-specific extension of the stateful PCE that integrates network topology discovery, path computation, and provisioning functions, but decouples the switch specific management framework. The G-TOP protocol enables the G-TOP controller to collect topology information, set up LSPs, and monitor state both from and to the management framework in a unified way. To validate the feasibility of the proposed framework, the author implemented a testbed using a multi-protocol label switching transport profile (MPLS-TP) switches and performed experimental testing. The experimental results show that the centralized control framework reduces provisioning time by approximately 68 ms and the autonomous management framework reduces fault recovery time by approximately 27 ms, while reducing the traffic load on the controller by several orders of magnitude compared to the OpenFlow approach.
机译:本文介绍了针对运营商级传输网络的通用拓扑发现,运行监控和配置(G-TOP)控制器的设计和评估。 G-TOP控制器是有状态PCE的特定于供应商的扩展,它集成了网络拓扑发现,路径计算和供应功能,但使特定于交换机的管理框架脱钩。 G-TOP协议使G-TOP控制器能够以统一的方式收集拓扑信息,建立LSP并监视管理框架之间的状态。为了验证所提出框架的可行性,作者使用多协议标签交换传输配置文件(MPLS-TP)交换机实现了一个测试平台,并进行了实验测试。实验结果表明,与OpenFlow方法相比,集中控制框架将配置时间减少了约68毫秒,自治管理框架将故障恢复时间减少了约27毫秒,同时将控制器上的流量负载减少了几个数量级。

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