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Pre-configured polyhedron (p-Poly) with optimal protection efficiency for dual-link failure in optical mesh networks

机译:预先配置的多面体(p-Poly),具有最佳保护效率,可解决光学网状网络中的双链路故障

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With the expansion of optical networks, the failure probability of dual-link failure has also improved, so it is urgent to find novel protection structures to deal with dual-link failure. In this paper, we mainly focus the protection structures to solve the problem. Firstly, we describe the scenarios and the problem of dual-link failure. Then, theory of pre-configured polyhedron (p-Poly) is introduced as the basis of structures with an efficient integer linear programming (ILP) construction model and two resources allocation schemes. Based on p-Poly, a novel structure named pre-configured ball (p-Ball) is introduced with an ILP construction model and a heuristic fast routing algorithm. Links on structure and in rings are used to evaluate the protection efficiency of structures. Simulation results show that, p-Ball has better performance than baseline structures (pre-configured prism) in protection efficiency, and it is quite close to the optimal p-Poly structure. The trend of p-Poly is finding novel structures with minimum links on structure and maximum links in rings.
机译:随着光网络的扩展,双链路故障的失败概率也有所提高,因此迫切需要寻找新颖的保护结构来应对双链路故障。在本文中,我们主要关注保护结构来解决该问题。首先,我们描述了双链路故障的情况和问题。然后,介绍了预配置多面体(p-Poly)的理论,作为具有有效整数线性规划(ILP)构建模型和两种资源分配方案的结构的基础。在p-Poly的基础上,提出了一种具有预配置球(p-Ball)的新型结构,该结构具有ILP构造模型和启发式快速路由算法。结构上和环中的链接用于评估结构的防护效率。仿真结果表明,p-Ball在保护效率上优于基线结构(预先配置的棱镜),并且与最佳p-Poly结构非常接近。 p-Poly的趋势是找到新颖的结构,其结构上的最小连接数和环中的最大连接数。

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