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Offshore Wind Farm Layout Design Considering Optimized Power Dispatch Strategy

机译:考虑优化功率分配策略的海上风电场布局设计

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摘要

Offshore wind farm has drawn more and more attention recently due to its higher energy capacity and more freedom to occupy area. However, the investment is higher. In order to make a cost-effective wind farm, the wind farm layout should be optimized. The wake effect is one of the dominant factors leading to energy losses. It is expected that the optimized placement of wind turbines (WT) over a large sea area can lead to the best tradeoff between energy yields and capital investment. This paper proposes a novel way to position offshore WTs for a regular shaped wind farm. In addition to optimizing the direction of wind farm placement and the spacing between WTs, the control strategy's impact on energy yields is also discussed. Since the problem is nonconvex and lots of optimization variables are involved, an evolutionary algorithm, the particle swarm optimization algorithm, is adopted to find the solution. In order to increase the probability of finding the global optimal solution, the adaptive parameter control strategy is utilized. Simulation results are given to verify the proposed approach and comparison is made with results obtained using other methods.
机译:近海风电场由于其更高的能量容量和更大的占用空间而受到越来越多的关注。但是,投资较高。为了使风电场具有成本效益,应优化风电场布局。唤醒效应是导致能量损失的主要因素之一。可以预期,风力涡轮机(WT)在大面积海域上的优化布置可以在能源产量和资本投资之间实现最佳平衡。本文提出了一种新颖的方式来定位常规形状的风电场的海上风电。除了优化风电场布置方向和WT之间的间距外,还讨论了控制策略对能源收益的影响。由于问题是非凸的,并且涉及许多优化变量,因此采用进化算法,即粒子群优化算法来寻找解决方案。为了增加找到全局最优解的可能性,利用了自适应参数控制策略。仿真结果证明了该方法的有效性,并与使用其他方法获得的结果进行了比较。

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