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Optimal design of distributed winding axial flux permanent magnet synchronous generator for wind turbine systems

机译:风机系统分布式绕组轴向磁通永磁同步发电机的优化设计

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In order to reduce harmonic distortion, this paper presents a distributed winding type axial flux permanent magnet synchronous generator (AFPMSG), suitable for wind turbine generation systems. The characteristic analysis is performed with the aid of a 3D finite element method (FEM) and these analysis results are confirmed by the experimental results. To improve the output power and unbalance of the phase back EMF, the optimal design process by using Kriging combined with latin hypercube sampling (LHS) and genetic algorithm (GA) was utilized. As a result, the output power and unbalance of the phase back EMF of the distributed winding type AFPMSG were improved efficiently while maintaining the total harmonic distortion (THD) and the average of the phase back EMF.
机译:为了减少谐波畸变,本文提出一种适用于风力发电机组的分布式绕组式轴向磁通永磁同步发电机(AFPMSG)。通过3D有限元方法(FEM)进行特性分析,这些分析结果得到了实验结果的证实。为了提高输出功率和反相位电动势的不平衡,利用了克里格算法与拉丁超立方采样(LHS)和遗传算法(GA)相结合的最佳设计过程。结果,在保持总谐波畸变(THD)和相反EMF的平均值的同时,有效地改善了分布式绕组型AFPMSG的相逆EMF的输出功率和不平衡。

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