基于三维有限元分析的永磁同步电机高频建模改进

A. Rahimi, K. Kanzi
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引用次数: 6

摘要

本文提出了一种详细的永磁同步电机(PMSM)高频集总参数电路模型,用于100hz ~ 10mhz频率范围内的电磁干扰(EMI)研究。通过测量PMSM的共模(CM)和差模(DM)阻抗特性以及基于物理的铁芯三维涡流分析(FEA)仿真,确定了该模型的参数。根据测量数据确定定子绕组的绕组电阻、寄生电容、漏电感和匝间效应。然而,测量数据不足以确定代表铁芯高频行为的未知参数。利用三维有限元分析,通过考虑铁芯损耗和铁芯涡流效应,可以对电动机复杂的中频特性进行建模。结果表明,所提出的方法模拟的CM和DM阻抗特性与所进行的电磁干扰研究所需频率的测量数据非常吻合。
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Improved High-Frequency Modeling of PMSM Using 3-D Finite Element Analysis
In this paper, A detailed high-frequency lumped parameter circuit model of Permanent Magnet Synchronous Motor (PMSM) is proposed for using in conducted Electromagnetic Interference (EMI) studies at the frequency range of 100 Hz to 10 MHz. Parameters of the proposed model are determined using the measured Common-Mode (CM) and Differential-Mode (DM) impedance characteristics of the PMSM and physics-based 3-D Finite Element Analysis (FEA) eddy-currents simulation of the iron-core. Winding resistances, parasitic capacitances, leakage inductances and inter-turn effects of the stator winding are determined from the measurement data. However, the measurement data is not enough to determine the unknown parameters which represent the high-frequency behavior of the iron-core. Using 3-D FEA gives the ability to model the complex mid-frequency behavior of the motor by including the core-loss and eddy-currents effects of the iron-core. Results show a good agreement for both CM and DM impedance characteristics modeled by the proposed method and the measurement data for the desired frequency of conducted EMI studies.
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