Offshore Wind Farm Layout Optimization Considering the Power Collection System Cost

Q3 Energy
S. Obukhov, D. Y. Davydov
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引用次数: 0

Abstract

The paper proposes a method for optimizing the layout of offshore wind farms to increase their efficiency by reducing the effect of aerodynamic shading, minimizing electrical losses in cable lines of the system for receiving and transmitting electrical energy generated by wind turbines to the electrical grid of the power system. The task is reduced to determining several parameters that define the geometric dimensions and shape of the layout grid with pre-installed tur-bine locations. This approach, in contrast to the coordinate-wise search method, makes it possible to build symmetrical grid layouts of wind power plants, which in practice are more convenient in terms of maintenance and operation. Together with the optimization of the layout, the search for the optimal location of the offshore transformer substation and the synthesis of the scheme of cable joints between wind power plants has been carried out. To solve this problem, a heuristic algorithm was used to search for a minimum spanning tree with a restriction on the conductivity of connections, which made it possible to build realistic schemes and more adequately assess their technical and economic characteristics. As the results of testing the proposed methodology on the example of optimizing the layout of the Horns Rev 1 wind farm have shown, the use of this approach has reduced the cost of the electrical system by 10–12 %. This is 7–11 % higher than the result obtained by using the MST algorithm, which performs the construction of a circuit of cable joints of a simplified topology. The change in the size and shape of the boundaries of the wind farm site resulted in an increase in the estimated electricity generation by 2.3 % and a decrease in its cost by 4 %. When optimizing the layout of wind turbines within the fixed boundaries of the site, these indicators are improved by only 1 and 2 % as compared to the original scheme.
考虑集电系统成本的海上风电场布局优化
本文提出了一种优化海上风电场布局的方法,通过减少空气动力学遮阳的影响来提高海上风电场的效率,最大限度地减少系统电缆线路的电损耗,以接收风力涡轮机产生的电能并将其传输到电力系统的电网。该任务简化为确定几个参数,这些参数定义了具有预装涡轮机位置的布局网格的几何尺寸和形状。该方法与坐标搜索法相比,可以实现风电场的对称网格布局,在实践中更便于维护和运行。在优化布局的同时,进行了海上变电站最优位置的寻找和风电场间电缆接头方案的综合。为了解决这一问题,使用启发式算法搜索具有连接导电性限制的最小生成树,从而可以构建现实的方案,并更充分地评估其技术和经济特性。通过对霍恩斯Rev 1风电场布局优化实例的测试结果表明,采用该方法可将电力系统成本降低10 - 12%。这比使用MST算法获得的结果高7 - 11%,MST算法执行简化拓扑的电缆接头电路的构建。风力发电场边界的大小和形状的变化导致估计发电量增加了2.3%,成本降低了4%。在场地固定边界内优化风机布局时,这些指标仅比原方案提高了1%和2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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