风电场优化设计中的综合布局与电缆布线

Manag. Sci. Pub Date : 2022-08-01 DOI:10.1287/mnsc.2022.4470
Martina Fischetti, M. Fischetti
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引用次数: 2

摘要

我们解决了海上风电场设计中一个非常重要的问题,即涡轮机位置和连接电缆的组合优化,这些连接电缆需要将涡轮机产生的电力输送到给定的变电站,并最终输送到岸上。我们首先描述了一个混合整数线性规划模型,该模型结合了以前文献中的建议。然后我们通过一些额外的不等式来改进它,以增强它的线性规划松弛性。特别地,我们提出了从问题的诱导团子结构衍生出的类benders切割的新类别。这些切割的有效性是建立在一个纯粹的组合方式,而不是诉诸于Benders的标准对偶理论,并提出了有效的分离程序。通过计算试验证明了所提出的切割方法的实际有效性,表明它们确实大大改善了标准模型提供的对偶界。我们还为该问题提供了一个精确的分支-切割求解器,它在运行时分离新的切割。计算结果证实了新的切割对精确解算器的成功是有帮助的。本文被张忠平(Chung-Piaw Teo)接受,优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated Layout and Cable Routing in Wind Farm Optimal Design
We address a very important problem in offshore wind farm design, namely, the combined optimization of the turbine location and of the connection cables required to bring the electrical power produced by the turbines to a given substation, and eventually to shore. We first describe a mixed-integer linear programming model that combines previous proposals from the literature. Then we improve it by a number of additional inequalities intended to strengthen its linear programming relaxation. In particular, we propose new classes of Benders-like cuts derived from an induced-clique substructure of the problem. The validity of these cuts is established in a purely combinatorial way, without resorting to Benders’s standard duality theory, and efficient separation procedures are proposed. The practical effectiveness of the proposed cuts is established through computational tests, showing that they do improve very significantly the dual bound provided by the standard model. We also present an exact branch-and-cut solver for the problem, which separates the new cuts at run time. Computational results confirm that the new cuts are instrumental for the success of our exact solver. This paper was accepted by Chung-Piaw Teo, optimization.
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