网络剩余容量生成树算法

L. Szymański, O. Yang
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引用次数: 5

摘要

可恢复性算法需要产生一个良好的逻辑结构,不引入延迟和拥塞问题。这项工作使用预配置对网络进行详细检查,并提出了一个树作为逻辑拓扑。该算法从WDM网状网络生成生成树,在保证网络结构具有较短路由路径的同时,又具有良好的可恢复性。采用链路开销与空闲容量成反比的最短路径法寻找节点间容量最大的路径。初步结果表明,在最短路径分析中,不同的链路成本定义在网络可恢复性和平均路径长度方面实现了不同的权衡。在某些情况下,当使用最小的备用容量时,可恢复性接近最佳(对于树形结构)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spanning tree algorithm for spare network capacity
Restorability algorithms need to produce a good logical structure that does not introduce delay and congestion problems. This work uses pre-configuration for a detailed examination of the network and proposes a tree as the logical topology. The algorithm produces a spanning tree from a WDM mesh network that allows for good restorability while assuring a structure with short routing paths. The shortest path method with cost on the links inversely proportional to the spare capacity is used to find maximum capacity paths between the nodes. Preliminary results show that varying the definition of the cost on the links for the shortest path analysis achieves different tradeoffs in network restorability vs. average path length. In some cases the restorability approaches optimum (for a tree structure), while using minimum spare capacity.
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