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首页> 外文期刊>IEEE Transactions on Reliability >Spare Capacity Reprovisioning for Shared Backup Path Protection in Dynamic Generalized Multi-Protocol Label Switched Networks
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Spare Capacity Reprovisioning for Shared Backup Path Protection in Dynamic Generalized Multi-Protocol Label Switched Networks

机译:动态广义多协议标签交换网络中用于备用备份路径保护的备用容量重新配置

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摘要

Spare capacity allocation serves as one of the most critical tasks in dynamic GMPLS networks to meet the stringent network availability constraint stipulated in the SLA of each connection. In this paper, an availability-aware spare capacity reconfiguration scheme based on shared backup path protection (SBPP) is proposed, aiming to guarantee the E2E availability of each LSP. We first provide an E2E availability model for a SBPP connection that is composed of a working and a SRG-disjoint shared backup LSP pair in the presence of all possible single, and dual simultaneous failures. Partial restoration is identified to further improve the capacity efficiency, and achieve finer service differentiation. For this purpose, restoration attempt is defined as a parameter for each connection that can be manipulated at the source node when the spare capacity of each link is scheduled. Based on the developed model, a Linear Program (LP) is formulated to perform inter-arrival spare capacity reconfiguration along each pre-determined shared backup LSP to meet the availability constraint of each connection. Simulation is conducted to verify the derived formulation, and to demonstrate the benefits gained in terms of the spare capacity saving ratio, where the conventional SBPP scheme that achieves 100% restorability for any single failure is taken as a benchmark. We will show that the simulation results validate the proposed E2E availability model, where a significant reduction on the required redundancy can be achieved in the effort of meeting a specific availability constraint for each SBPP connection.
机译:备用容量分配是动态GMPLS网络中最关键的任务之一,它要满足每个连接的SLA中规定的严格的网络可用性约束。本文提出了一种基于共享备份路径保护(SBPP)的可用性感知备用容量重配置方案,旨在保证每个LSP的端到端可用性。我们首先为SBPP连接提供一个E2E可用性模型,该模型由工作中的SRG和不相连的共享备份LSP对组成,同时存在所有可能的单双故障。确定部分恢复以进一步提高容量效率,并实现更好的服务差异化。为此,将恢复尝试定义为每个连接的参数,当计划每个链接的备用容量时,可以在源节点上对其进行操作。基于开发的模型,制定了线性程序(LP),以沿每个预定的共享备份LSP执行到达间隔的备用容量重新配置,以满足每个连接的可用性约束。进行仿真以验证派生的公式,并证明在备用容量节省率方面所获得的好处,其中将针对任何单个故障实现100%可恢复性的常规SBPP方案作为基准。我们将显示,仿真结果验证了提议的E2E可用性模型,该模型可以在满足每个SBPP连接的特定可用性约束的情况下,实现所需冗余的显着减少。

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