用磁路模型预测分数槽集中绕组内部永磁电机铁芯损耗

J. Tangudu, T. Jahns, A. El-Refaie
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引用次数: 22

摘要

本文提出了一种利用简化的集总参数磁路模型(MCM)估计分数槽集中绕组(FSCW)内永磁体磁芯损耗的方法。该模型包含几个关键的非线性现象,包括:(1)磁饱和;(ii) d轴和q轴之间的交叉饱和效应影响磁通连接和电感;(iii)定子开槽效应;(iv)转子桥的局部效应。MCM配置用于预测转子旋转时铁中的磁通密度波形。然后应用傅里叶变换提取每个铁芯磁导率单元的磁通密度频率分量,然后估计每个单元的损耗。然后可以将这些磁导率损失结合起来,以提供整个岩心中铁的估计损失。该模型对FSCW-IPM靶机的堆芯损耗预测结果与有限元分析结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Core loss prediction using magnetic circuit model for fractional-slot concentrated-winding interior permanent magnet machines
This paper presents a promising technique for estimating the cores losses of a fractional-slot concentrated-winding (FSCW) interior permanent magnet (IPM) machine using a simplified lumped-parameter magnetic circuit model (MCM). This model incorporates several key nonlinear phenomena including (i) magnetic saturation; (ii) cross-saturation effects between the d- and q-axes affecting both flux linkages and inductances; (iii) stator slotting effects; and (iv) localized effects due to rotor bridges. The MCM is configured to predict the flux densities waveforms in the iron as the rotor rotates. Fourier transformation is then applied to extract the frequency components of the flux density in each iron core permeance element, followed by estimation of the losses in each element. These permeance losses can then be combined to provide the estimated iron losses in the total core. Very good agreement is demonstrated between core loss predictions delivered by this model for a target FSCW-IPM machine and those provided by finite element (FE) analysis.
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