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Compact ILP formulations for the routing and wavelength assignment problem in the design of optical transport networks with regenerators

机译:紧凑的ILP公式,用于设计带有再生器的光传输网络中的路由和波长分配问题

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This paper addresses two variants of the routing and wavelength assignment problem arising in the context of optical transport networks. In both variants, we address the case where the physical coverage of the fiber network is such that regenerators, to be placed on intermediate nodes of the lightpaths, have to be used to reach full connectivity between network nodes. In the first variant, we aim to minimize the solution cost given by the sum of the costs of all electrical-optical-electrical converter components. In the second variant, among all minimum cost solutions, we aim to optimize the network load balancing by minimizing the highest assigned wavelength. For each problem variant, we start by defining a basic integer linear programming compact formulation. Then, we improve each formulation using variable reformulation and variable elimination techniques. Finally, we present computational results showing that the reformulated formulations with variable elimination let us obtain provable optimal solutions for problem instances of relevant size within reasonable runtimes.
机译:本文讨论了光传输网络中出现的路由和波长分配问题的两种变体。在这两种变体中,我们都解决了光纤网络的物理覆盖范围使得必须将再生器放置在光路的中间节点上的情况,以实现网络节点之间的完全连接。在第一个变体中,我们的目标是使所有电光-电-电转换器组件的成本之和最小化解决方案成本。在第二种方案中,在所有最低成本的解决方案中,我们旨在通过最小化最高分配波长来优化网络负载平衡。对于每个问题变体,我们首先定义一个基本的整数线性规划紧凑公式。然后,我们使用可变配方和可变消除技术改进每种配方。最后,我们给出的计算结果表明,具有变量消除功能的重新制定的公式使我们能够在合理的运行时间内为相关大小的问题实例获得可证明的最优解。

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