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Comparative study of fully pre-cross-connected protection architectures for transparent optical networks

机译:对透明光网络完全前连接保护架构的比较研究

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Protection architectures that have the property of pre-cross-connection are advantageous to the implementation of transparent optical paths. A pre-cross-connected protection path can be in a known-good working condition before use, whereas on-the-fly assembly of a protection path through transparent concatenation of optical channels may not rapidly satisfy the optical path integrity objective. In this study, several pre-cross-connected architectures were compared on the basis of spare capacity cost for 100% single failure restorability, the dual failure restorability of these designs, and the ability of each architecture to support a feasible wavelength assignment and limits on the maximum length of transparent optical paths. The architectures considered were p-cycles, failure independent path-protecting (FIPP) p-cycles, demand-wise shared protection (DSP), pre-cross-connected trails (PXTs), span-protecting p-trees, and path-protecting p-trees. The results give insight into the relative merits and demerits of these architectures.
机译:具有前交叉连接性质的保护架构是有利于实现透明光路的实现。在使用前,交叉连接的保护路径可以是已知的良好工作状态,而通过光学通道的透明级联的保护路径的在飞行组件可能不会迅速满足光路完整性目标。在这项研究中,在备用容量成本的基础上进行了多个交叉连接的架构,以获得100%单个故障恢复性,这些设计的双重故障可恢复性以及每个架构支持可行波长分配和限制的能力透明光路的最大长度。所考虑的架构是p循环,失败独立路径保护(FIPP)p循环,需求 - 明智的共享保护(DSP),交叉交叉连接的路径(PXT),跨度保护的P树和路径保护p树。结果深入了解这些架构的相对优点和缺点。

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