对PWM变换器驱动的大功率超精密永磁同步电机进行了电磁干扰仿真

Youpeng Huangfu, Shuhong Wang, Juanning Yang, Hongxu Wang, L. Di Rienzo, D. Hamza
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引用次数: 4

摘要

全面介绍了脉宽调制(PWM)变换器驱动的主轴型永磁同步电动机的传导电磁干扰(EMI)和过电压特性。大功率、超精密永磁同步电机应用于数控磨床。传导电磁干扰预测模型主要包括多芯屏蔽电缆模型、高频变换器模型和永磁同步电机模型。考虑到控制对的耦合效应,采用多芯传输线(MTL)理论建立多芯屏蔽电缆。利用解析式计算了PWM变换器的寄生电容。结合阻抗测量法和矢量拟合法,建立了永磁同步电机的高频等效电路模型。考虑了转子位置对永磁同步电机阻抗测量的影响。利用该预测模型对逆变器输出端和PMSM端子输入端的共模(CM)和差模(DM)干扰电压和电流进行预测。讨论了多芯屏蔽长电缆对PMSM端子过电压的参数影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conducted EMI simulation for a high power Ultra-precision PMSM driven by PWM converter
The conducted electromagnetic interference (EMI) and overvoltage characteristics for a spindle permanent magnet synchronous motor (PMSM) driven by pulse width modulation (PWM) converter are comprehensively presented. The high power, ultra-precision PMSM is applied to a computer numerical control (CNC) grinding machine. The conducted EMI prediction model mainly includes multi-core shielded cable, high frequency (HF) converter and PMSM models. The multi-transmission line (MTL) theory is employed to establish the multi-core shielded cable considering their coupling effect caused by the control pairs. The parasitic capacitance for the PWM converter is calculated by using the analytical formula. The HF equivalent circuit model of the PMSM is obtained combining the methods of impedance measurement and vector fitting method. The influence of the rotor position on the PMSM impedance measurement is considered. The common mode (CM) and differential mode (DM) interference voltage and current both for the output of inverter and the input of PMSM terminals are conducted by using the prediction model. The parametric influence of the long multi-core shielded cables on the overvoltage for the PMSM terminal is discussed.
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