A novel resilience matrix for survivable routing in a distributed control architecture

W. Liu, H. Sirisena, K. Pawlikowski
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Abstract

Fast recovery from failures and overall high utilization of network capacity are two primary goals of network survivability design. Shared backup path protection (SBPP) has been shown to be efficient in terms of capacity utilization, due to the sharing capability among protection paths. The amount of bandwidth sharing that can be achieved depends on how detailed is the bandwidth usage information available at the source nodes to identify the dependencies between the working and protection capacities associated with each pair of links. In this paper, we investigate such dependencies of SBPP under a distributed control environment and propose a novel matrix-based framework, termed Resilience Matrix (RM), as a general distributed control architecture that can be applied in the link-state dissemination paradigm in survivable routing.
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分布式控制体系结构中可生存路由的一种新的弹性矩阵
从故障中快速恢复和网络容量的总体高利用率是网络生存性设计的两个主要目标。共享备份路径保护(Shared backup path protection, SBPP)由于在保护路径之间具有共享能力,在容量利用率方面具有较高的效率。可以实现的带宽共享量取决于源节点上可用的带宽使用信息的详细程度,以确定与每对链路相关的工作能力和保护能力之间的依赖关系。在本文中,我们研究了分布式控制环境下SBPP的这种依赖关系,并提出了一种新的基于矩阵的框架,称为弹性矩阵(RM),作为一种通用的分布式控制体系结构,可以应用于可生存路由的链路状态传播范式。
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