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Torque Ripple Reduction of Interior Permanent Magnet Synchronous Motor Using Harmonic Injected Current

机译:利用谐波注入电流降低内部永磁同步电动机的转矩脉动

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摘要

Interior permanent magnet synchronous motor (IPMSM) is widely used for many industrial applications such as power train, compressor and home appliances due to its high power density and wide speed range. However, IPMSM have relatively high torque ripple in comparison with surface mounted permanent magnet motor. In case of IPMSM, d-axis current should be fed to use reluctance torque, and the more d-axis current is needed as the motor speed goes up. Therefore, back electromotive force (EMF) of IPMSM contains much harmonics and torque ripple tend to increase as the motor speed increase. This paper proposes a method to reduce torque ripple using harmonic injected current. Firstly dominant harmonic order of back EMF is investigated then under the consideration of harmonics, torque ripple using harmonic injected current will be compared with that of sinusoidal current by finite element analysis.
机译:内部永磁同步电动机(IPMSM)具有高功率密度和宽速度范围,因此广泛用于许多工业应用,例如动力总成,压缩机和家用电器。但是,与表面安装的永磁电动机相比,IPMSM具有相对较高的转矩脉动。对于IPMSM,应馈入d轴电流以使用磁阻转矩,并且随着电动机速度的提高,需要更多的d轴电流。因此,IPMSM的反电动势(EMF)包含许多谐波,并且转矩波动会随着电动机速度的增加而增加。本文提出了一种使用谐波注入电流减小转矩脉动的方法。首先研究反电动势的主要谐波阶数,然后在考虑谐波的情况下,通过有限元分析将使用谐波注入电流的转矩脉动与正弦电流的转矩脉动进行比较。

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