各种调制方案对电动汽车内永磁同步电机的影响

P. Dost, C. Sourkounis
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引用次数: 0

摘要

本文讨论了一种理想电压源驱动永磁同步电动机的传动系统。采用交流和直流两侧均无谐波滤波器的两电平三相常规逆变器作为功率调节手段。根据电动汽车的简化传动系统,将DTS建模为双振荡器。采用了常用的基于脉宽调制(PWM)和基于bang-bang控制器(BBC)的逆变调制方案。这些调制方案对DTS性能的影响是通过评估流向DTS电源的逆变器产生的谐波水平来确定的。仿真结果表明,采用迟滞控制器可以降低脉冲频率,并且随着逆变器产生的频谱谐波能量的相关色散,可以部分保留直流链路中没有滤波器的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On influence of various modulation schemes on a PMSM within an electric Vehicle
A drive train system (DTS) powered by an ideal voltage source and driving a permanent magnet synchronous motor (PMSM) is discussed in this paper. A two-level, three-phase conventional inverter with no harmonic filters on both AC and DC sides is used as means of power conditioning. This DTS is modelled as a double oscillator according to a simplified drive train in an electric vehicle. Commonly used pulse width modulation (PWM) based, as well as bang-bang controller (BBC) based inverter modulation schemes are applied. The influence of these modulation schemes on the performance of the DTS is determined by assessing the level of inverter generated harmonics flowing to the electric source of the DTS. The simulated results presented in the paper indicate that the pulsing frequency can be reduced by means of the hysteresis controller and that with related dispersion of the harmonic energy of the inverter generated spectrum the absence of filters in the dc-link can be partly retained.
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