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Design of and Resiliency Enhancement in Coarse/Fine Hybrid Granular Routing Optical Networks Based on Iterative Path-Pair-Loop Inflation

机译:基于迭代路径对循环通胀的粗/精细粒状路由光网络设计与弹性增强

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A spectral-resource-utilization-efficient and highly resilient coarse granular routing optical network architecture is proposed. The improvement in network resiliency is realized by a novel concept named loop inflation that aims to enhance the geographical diversity of a working path and its redundant path. The trade-off between the inflation and the growth in circumference length of loops is controlled by the Simulated Annealing technique. Coarse granular routing is combined with resilient path design to realize higher spectral resource utilization. The routing scheme defines virtual direct links (VDLs) bridging distant nodes to alleviate the spectrum narrowing effect at the nodes traversed, allowing optical channels to be more densely accommodated by the fibers installed. Numerical experiments elucidate that the proposed networks successfully achieve a 30+0/0 route diversity improvement and a 12% fiber number reduction over conventional networks.
机译:提出了一种光谱资源利用 - 利用高效且高度弹性的粗粒路由光网络架构。通过名为Loop通货膨胀的新概念实现了网络弹性的改善,该概念旨在增强工作路径的地理分集及其冗余路径。通过模拟退火技术控制膨胀与环长度长度之间的折衷。粗粒路由与弹性路径设计结合,实现更高的光谱资源利用率。路由方案定义了桥接远处节点的虚拟直接链路(VDLS),以减轻穿过的节点处的光谱缩小效果,允许通过安装的纤维更密集地容纳光学通道。数值实验阐明,所提出的网络成功实现了30 + 0/0路线的分集改进和传统网络的12%光纤数减少。

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