Minimizing the Number of Constraints for Shared Backup Path Protection (SBPP) in Shared Risk Link Group (SRLG) Optical Mesh Networks

D. Habibi, Viet Q. Phung, H. Nguyen
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引用次数: 2

Abstract

Path-arc integer linear programming (ILP) models for shared backup path protection (SBPP) in optical mesh networks generally contain many redundant constraints for calculating shared backup capacity. This greatly increases the computational time of the ILP solvers. In this paper, we first identify the sharing relationship between working and backup capacities, which facilitates the development of two novel algorithms for minimizing the number of constraints in ILP models for SBPP in mesh networks. Next, we consider the more realistic case of Shared Risk Link Group (SRLG) networks, where some optical fibers have the same risk of a physical cut due to being bundled in the same conduit. We propose a path-arc ILP model for SBPP in SRLG networks and minimize the number of constraints in this ILP model using the proposed algorithms. Simulation results show a remarkable reduction of around 50% in the number of constraints, which significantly improves the computational complexity of the model.
SRLG (Shared Risk Link Group)光网状网络中共享备份路径保护约束数量最小化
光网状网络中共享备份路径保护的路径-弧整数线性规划(ILP)模型通常包含许多冗余约束来计算共享备份容量。这大大增加了ILP求解器的计算时间。在本文中,我们首先确定了工作容量和备份容量之间的共享关系,这有助于开发两种新的算法来最小化网状网络中SBPP的ILP模型中的约束数量。接下来,我们考虑更现实的共享风险链路组(SRLG)网络的情况,其中一些光纤由于捆绑在同一管道中而具有相同的物理切割风险。我们提出了SRLG网络中SBPP的路径弧ILP模型,并使用所提出的算法最小化该ILP模型中的约束数量。仿真结果表明,约束数量显著减少约50%,显著提高了模型的计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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