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Incremental optical network topology optimization using meta-mesh span restoration

机译:使用元网格跨度恢复的增量光网络拓扑优化

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In recent years, many mechanisms have been proposed for efficient network survivability. Localized span restoration and end-to-end path restoration are two well known general approaches. While path restoration is more efficient with respect to capacity, span restoration is simpler and faster to implement and design. The meta-mesh scheme was proposed a number of years ago to bridge that gap in sparse network topologies, providing more capacity-efficient designs with a simple span-restoration-like mechanism. We develop a new node-arc meta-mesh ILP formulation and further extend that formulation to allow for incremental topology optimization. Results show that even where topology is flexible, thereby allowing a span-restorable network to use a higher-connectivity topology, meta-mesh restoration can outperform span restoration in terms of capacity and number of spans required.
机译:近年来,已经提出了许多机制来提高网络的生存能力。局部跨度恢复和端到端路径恢复是两种众所周知的通用方法。尽管路径恢复在容量方面更有效,但跨度恢复更易于实现和设计。几年前提出了元网格方案,以弥合稀疏网络拓扑中的差距,并通过一种类似于跨度恢复的简单机制提供了容量更有效的设计。我们开发了新的节点弧元网格ILP公式,并进一步扩展了该公式以允许增量拓扑优化。结果表明,即使在拓扑灵活的情况下(从而允许跨度可恢复的网络使用更高连接性的拓扑),在所需的跨度和跨度数量方面,元网格恢复也可以胜过跨度恢复。

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