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Input power factor compensation for PWM-CSC based high-power synchronous motor drives

机译:基于PWM-CSC的大功率同步电动机驱动器的输入功率因数补偿

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An input power factor compensation scheme is proposed in this paper for pulse width modulated (PWM) current source converter (CSC) based medium-voltage high-power synchronous motor drives. At high-power levels, the device switching frequency in a PWM-CSC is normally limited to a few hundred hertz. This imposes limitations on the applicable PWM switching schemes and system control schemes. The proposed method can achieve full-range unity power factor control while operating at low switching frequency by combining inverter modulation index control and motor magnetizing current regulation. The modulation index control together with space vector modulation scheme is used in the low-speed range; at high speeds or whenever the converter runs out of modulation index adjustment, the magnetizing current control is enabled. Experimental results obtained from a 480V/42hp drive system verify the proposed scheme.
机译:本文提出了一种基于脉宽调制(PWM)电流源转换器(CSC)的中压大功率同步电动机驱动器的输入功率因数补偿方案。在高功率水平下,PWM-CSC中的设备开关频率通常限制在几百赫兹。这对适用的PWM切换方案和系统控制方案施加了限制。通过将逆变器调制指数控制和电动机励磁电流调节相结合,该方法可以在低开关频率下运行时实现全范围单位功率因数控制。在低速范围内使用调制指数控制和空间矢量调制方案。在高速或变流器的调制指数调整用尽时,将启用励磁电流控制。从480V / 42hp驱动系统获得的实验结果验证了所提出的方案。

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