空芯永磁电机转子损耗预测

Estanislao Echenique, O. Keysan, M. Mueller
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引用次数: 2

摘要

尽管稀土材料成本上升,但中低速永磁(PM)电机因其效率高、可靠性好而受到风力发电机制造商的青睐。无铁定子电机由于其降低制造成本而在文献中被提出。然而,在空芯机的建模过程中,转子损耗的计算通常被忽略。通过有限元分析(FEA)和实验测试发现,在空芯定子(无铁)低速电机中,转子损耗可高达铜损耗的40%。本文介绍了两种利用静态有限元法估计涡流转子损失的方法,以及锁转子试验的实验数据。通过锁转子试验,可以得到预测转子损失的等效电阻;特别注意由绕组拓扑结构引起的空间谐波。分析了两种原型机:径向和轴向磁通机。当相电流为非正弦(无源整流)时,应用叠加原理可以很好地预测转子损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotor loss prediction in air-cored permanent magnet machines
Despite the cost raise of rare earth materials, low and medium speed permanent magnet (PM) machines have gained big popularity among wind turbine manufacturers due to their high efficiency and reliability. Ironless stator machines have been proposed in the literature due to their reduced manufacturing cost. However, in the modelling process of the aircored machines, the rotor loss calculation is generally neglected. Through Finite Element Analysis (FEA) and experimental testing it has been found that rotor losses can be as high as 40% of the copper losses in an air-cored stator (ironless) low speed machine. This paper describes two methodologies to estimate the rotor losses due to eddy currents using static FEA, and the experimental data from the rotor-locked test. The equivalent resistance to predict the rotor losses can be obtained from the rotor-locked test; paying special attention to space harmonics induced due to the winding topology. Two prototypes have been analyzed: a radial and an axial flux machine. The rotor losses can be predicted with great accuracy applying the superposition principle, when the phase currents are nonsinusoidal (passive rectification).
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