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Frequency Domain Analysis of Beatless Control Method for Converter-Inverter Driving Systems Applied to AC Electric Cars

机译:交流电动汽车变频驱动系统无差拍控制方法的频域分析

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摘要

In inverter-converter driving systems for AC electric cars, the DC input voltage of an inverter contains a ripple component with a frequency that is twice the line voltage frequency, due to the use of a single-phase converter. The ripple component of the inverter input voltage causes pulsations in the torque and current of driving motors. To decrease the pulsations, a beatless control method, which modifies the slip frequency depending on the ripple component, is applied to the inverter control. In the present paper, the beatless control method is analyzed in the frequency domain. In the first step of the analysis, transfer functions which revealed the relationship among the ripple component of the inverter input voltage, the slip frequency, the motor torque pulsation, and the current pulsation were derived with a synchronous rotating model of induction motors. An analytical model of the beatless control method was then constructed using the transfer functions. The optimal setting of the control method was obtained according to the analytical model. The transfer functions and the analytical model were verified by simulations.
机译:在用于交流电动汽车的逆变器-变频器驱动系统中,由于使用单相转换器,逆变器的直流输入电压包含纹波分量,该纹波分量的频率是线电压频率的两倍。逆变器输入电压的纹波分量会导致驱动电机的转矩和电流产生脉动。为了减少脉动,将无波动的控制方法(根据跳变分量修改滑差频率)应用于逆变器控制。本文在频域上分析了无差拍控制方法。在分析的第一步中,利用感应电动机的同步旋转模型导出了传递函数,该传递函数揭示了逆变器输入电压的纹波分量,转差频率,电动机转矩脉动和电流脉动之间的关系。然后使用传递函数构造了无节拍控制方法的分析模型。根据分析模型获得了控制方法的最佳设置。通过仿真验证了传递函数和解析模型。

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