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Optimal Design for Offshore Wind Farm considering Inner Grid Layout and Offshore Substation Location

机译:考虑内部电网布局和海上变电站位置的海上风电场的优化设计

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摘要

This paper introduces an efficient methodology to design optimally cable layout of inner grid as well as location of offshore substation. The methodology is composed of two optimizers: one is inner grid layout optimizer, which consists of several algorithms such as the k-clustering-based genetic algorithm, the minimum spanning tree, and the cable selection; the other one is offshore substation location optimizer based on the pattern search method. While performing iteratively two optimizers, alternatives for cable layout and candidates for location of offshore substation are generated and evaluated in the economic and reliability aspects, respectively. Optimal layout of offshore wind farm is determined so as to minimize the total cost which is a sum of construction, power loss, maintenance, and reliability costs.
机译:本文介绍了一种有效的方法来优化内部电网的电缆布局以及海上变电站的位置。该方法由两个优化器组成:一个是内部网格布局优化器,它由几种算法组成,例如基于k聚类的遗传算法,最小生成树和电缆选择。另一个是基于模式搜索方法的海上变电站位置优化器。在迭代执行两个优化器时,分别在经济和可靠性方面生成并评估了电缆布局的替代方案和海上变电站的位置候选方案。确定海上风电场的最佳布局,以使总成本降至最低,该总成本是建筑,电力损耗,维护和可靠性成本的总和。

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