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Optimal design of collector topology for offshore wind farm based on ant colony optimization approach

机译:基于蚁群优化方法的海上风电场集热器拓扑优化设计

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Layout of offshore wind farm (OSWF) plays a major role in capital cost of its installation. The cost of OSWF depends on the cost of electrical collector system which includes, submarine cables, number of wind turbines, offshore platforms etc. The optimal design of OSWF will give better economical outcome. This paper explains the methodology for optimal design of OSWF electrical collector system and cost model of collector system. The methodology is based on the combination of Ant Colony optimization and Travelling Salesman problem. The objective is to minimize the length of submarine cable connected between wind turbines in wind farm. It will reduce the cost of cable and cable power loss. With the help of North Hoyle OSWF connected with 30 wind turbines, the optimization approach designs optimal OSWF based on minimum length of cable for radial and ring topologies.
机译:海上风电场(OSWF)的布局在其安装的资本成本中起着重要作用。 OSWF的成本取决于集电器系统的成本,其中包括海底电缆,风力涡轮机的数量,海上平台等。OSWF的优化设计将带来更好的经济效果。本文介绍了OSWF集电器系统的优化设计方法和集电器系统的成本模型。该方法基于蚁群优化和Traveling Salesman问题的组合。目的是使风力发电场中的风力涡轮机之间连接的海底电缆的长度最小化。它将减少电缆成本和电缆功率损耗。借助North Hoyle OSWF与30台风力涡轮机的连接,该优化方法基于用于径向和环形拓扑的电缆的最小长度来设计最佳OSWF。

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