利用广义斯坦纳问题设计骨干网

F. Robledo, Eduardo Canale Bentacourt
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引用次数: 3

摘要

在城域光纤网络的设计中,一个常见的要求是保证网络中不同的节点对之间存在节点分离路径。这样,当某些组件(链路或节点)发生故障时,网络将保持连接,这是维持运行状态的基本必要条件。在本工作中,我们引入贪婪随机自适应搜索程序(GRASP)来设计可生存的骨干网络。该算法构建符合异构节点连接要求的拓扑结构。将该方法应用于一组具有不同连通性要求的问题实例,得到了令人满意的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing backbone networks using the generalized steiner problem
In the design of metropolitan optical fiber networks, a commonly applied requirement is to ensure the existence node-disjoint-paths between pairs of distinguished nodes of the network. In this way, when a failure occurs in some component (link or node), the network will remain connected, a basic requisite for maintaining an operational state. In this work, we introduce a Greedy Randomized Adaptive Search Procedure (GRASP) for designing a survivable backbone. The algorithm builds topologies which comply with heterogeneous node-connectivity requirements. The method is applied to a set of problem instances with different connectivity requirements, obtaining results which appear promising.
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