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Study on the dead-time effection in PWM inverter control of electric vehicle's motor

机译:电动汽车电动机PWM逆变器控制中的死区效应研究

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One of the disadvantages of the direct torque control (DTC) in electric vehicle motor drive system is poor performance at low speed, and the dead-time is an important factor influencing its low speed performance. Dead-time effect caused by the switching lag-time, which avoids the phase shortage of inverter arms, causes serious distortions of output voltage and current of the inverter. In order to reduce the output waveform's harmonic content of inverter and the torque ripple of motor, several methods have been proposed. However, most of those methods consider from voltage or current compensation, and the relative realization are complicated meanwhile the result is not satisfied. With Fourier Transform this paper presents the principle of the dead-time influence on the torque ripple of the motor controlled by PWM inverter. By calculated, this paper obtains a set of optimal solutions. A novel method to improve the torque ripple was proposed. Theory analysis and simulation results show this method can decrease the scope of unreasonnable torque ripple.
机译:电动汽车电机驱动系统中直扭矩控制(DTC)的缺点之一在低速下性能差,死区时间是影响其低速性能的重要因素。由切换滞后时间造成的死区时间效应,避免了逆变器臂的相位短缺,从而引起了逆变器的输出电压和电流的严重扭曲。为了降低输出波形的逆变器的谐波含量和电动机的扭矩脉动,已经提出了几种方法。然而,大多数方法考虑来自电压或电流补偿,并且相同的实现是复杂的结果不满足结果。傅立叶变换本文介绍了对PWM逆变器控制电机的扭矩纹波的死区时间影响。通过计算,本文获得了一系列最佳解决方案。提出了一种改进扭矩波纹的新方法。理论分析和仿真结果表明,该方法可以降低不合理的扭矩波动的范围。

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