PWM逆变器断电时间导致感应电机失稳的简化模型及校正措施

R. S. Colby, A.K. Simlot, M.A. Hallouda
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引用次数: 45

摘要

已知脉宽调制(PWM)逆变器开关中的消隐时间会引起交流电压波形的畸变,并可能引起感应电动机的不稳定。推导了一种逆变器的基元等效电路,其中波形失真的影响表示为等效源电阻。增加的阻力被证明是不稳定的原因。该等效电路可用于预测由PWM逆变器供电的感应电动机的电流和速度波形。该电路可用于模拟消隐时间的影响,并且比全PWM逆变器模型所需的计算量少得多。描述了一种简单的校正措施,即根据负载电流的极性增加PWM参考信号的偏移量。补偿补偿了由于下料时间造成的畸变,减少了由于电机不稳定引起的转子振荡。
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Simplified model and corrective measures for induction motor instability caused by PWM inverter blanking time
Blanking time in PWM (pulse width modulation) inverter switching is known to cause distortion of the AC voltage waveform and can induce instability in induction motors. A fundamental component equivalent circuit of the inverter in which the effect of the waveform distortion is represented as an equivalent source resistance is derived. The added resistance is shown to be the cause of instability. The equivalent circuit is shown to be useful in predicting the current and speed waveforms of induction motors fed by PWM inverters. This circuit is useful for simulating the effect of the blanking time, and requires far less computation than a full PWM inverter model. A simple corrective measure that adds an offset to the PWM reference signal according to the polarity of the load current is described. The compensation corrects the distortion due to the blanking time, and reduces the rotor oscillations due to the motor instability.<>
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