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Loss sensitivity of a parallel wound low voltage airgap winding PM generator for offshore wind turbines

机译:海上风力发电机并联绕制低压气隙绕组永磁发电机的损耗灵敏度

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This paper investigates power losses due to circulating currents of a low voltage axial-flux air-cored airgap permanent magnet generator. Both broad and narrow tolerances for the design, material and manufacturing process of the generator were investigated to assess the sensitivity of tighter build tolerances on the magnitude of the circulating currents. Aspects of the generator design that were analysed include the height of the permanent magnets, the magnet maximum energy product, and the separation between the two rotor plates. Variations in the magnet maximum energy product between the parallel windings resulted in the largest circulating currents for studying the individual variables. By combining the variations in magnet energy with variations in magnet height and rotor plate separation, the circulating currents were intensified with a calculated average loss of 19 kW. The study highlights the importance of careful design parameters and tolerances in an effort to minimize power losses and reduce losses in revenue over the lifetime of the generator.
机译:本文研究了由低压轴向磁通空心气隙永磁发电机的循环电流引起的功率损耗。研究了发电机设计,材料和制造工艺的宽容差和窄容差,以评估更严格的容差对循环电流大小的敏感性。分析过的发电机设计包括永磁体的高度,磁体的最大能量乘积以及两个转子板之间的间距。并联绕组之间的磁体最大能量乘积的变化导致研究单个变量的最大循环电流。通过将磁能的变化与磁铁高度和转子板间距的变化结合起来,循环电流得到了增强,计算出的平均损耗为19 kW。这项研究强调了精心设计的参数和公差的重要性,以最大程度地降低功率损耗并减少发电机使用寿命内的收入损失。

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