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Combined approach based on ACO with MTSP for optimal internal electrical system design of large offshore wind farm

机译:基于ACO的组合方法,MTSP为大型海上风电场最优内部电气系统设计

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The wind turbine (WT) layout and electrical system layout plays a vital role in offshore wind farm (OWF) design. The wake effect has a significant impact on the power production of the OWF. WTs in wake region will not experience healthy wind; hence it affects the power production. The proper placement of WTs can reduce the wake effect in OWF. The optimal design of large OWF is based on combined approach of Ant colony optimization (ACO) with multiple travelling salesmen problem (MTSP) is presented. The objectives of the approach are to improve power production, minimize the length of cable and cable cost. By considering (a) placement of WT with consideration of wake effect, (b) placement of substation, (c) selection of submarine cables with higher reliability and minimal power loss, and (d) minimum length of WT cable routing with zero cross connection. ACO-MTSP approach is applied on large OWF connected with 280 WTs and results are compared with the outcome of reference OWF.
机译:风力涡轮机(WT)布局和电气系统布局在海上风电场(OWF)设计中起着至关重要的作用。唤醒效果对OWF的电力产生产生了重大影响。 Wake地区的WTS不会经历健康的风;因此它影响了电力生产。 WTS的适当放置可以减少OWF中的唤醒效果。大型OWF的最佳设计是基于蚁群优化(ACO)的组合方法,并提出了多次旅行的销售人员问题(MTSP)。该方法的目标是提高电力生产,最大限度地减少电缆和电缆成本的长度。考虑到(a)考虑到WT的唤醒效果,(b)放置变电站的放置,(c)具有更高可靠性和最小功率损耗的潜艇电缆,(d)WT电缆路由的最小长度与零交叉连接。 ACO-MTSP方法应用于与280个WTS连接的大OWF,并将结果与​​参考OWF的结果进行比较。

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