A control system-based reduction of electromagnetic torque ripples in a VSI-fed poly-phase PMSM with nonsinusoidal back-EMF

M. Pronin, O. Shonin, A. Vorontsov, G. Gogolev
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引用次数: 5

Abstract

The paper presents a model of a permanent magnet motor with M sets of three phase stator windings energized from DC-DC and DC-AC converters and regulated by a control subsystem of the marine propulsion drive. The model is built up by decomposing the system into subsystems / sub-circuits which are coupled together via dependent voltage/current sources. The model takes into account the non-sinusoidal waveform of back-EMF and its impact on the current distortion and electromagnetic torque ripples. The paper concludes by analyzing simulation results that have shown significant suppression of the 5th order current harmonic and corresponding decrease in the torque ripples due to the proposed control algorithm.
基于控制系统的非正弦反电动势vsi馈电多相永磁同步电机的电磁转矩脉动减小
本文提出了一种永磁电动机的模型,该电动机具有M组三相定子绕组,由直流-直流和直流-交流变换器供电,由船舶推进传动控制子系统调节。该模型是通过将系统分解成子系统/子电路来建立的,这些子系统/子电路通过相关的电压/电流源耦合在一起。该模型考虑了反电动势的非正弦波形及其对电流畸变和电磁转矩脉动的影响。仿真结果表明,该控制算法有效地抑制了五阶电流谐波,减小了转矩脉动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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