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Capacitor Voltage Balancing of a Five-Level ANPC Converter Using Phase-Shifted PWM

机译:使用相移PWM的五电平ANPC转换器的电容器电压平衡

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Five-level active neutral-point clamped (5L-ANPC) converter is an attractive topology for high-power medium-voltage motor drives. This paper presents a capacitor voltage-balancing method for the 5L-ANPC converter, including the voltage balancing of dc-link capacitors and flying capacitors. In order to ensure that the series-connected or high-voltage switches of the 5L-ANPC converter are operated at fundamental frequency and the other switches are operated at a constant switching frequency, phase-shifted pulse width modulation is used to control this converter. The relationship between the average neutral-point current and zero-sequence voltage is investigated, and an optimum zero-sequence voltage is calculated to regulate the neutral-point potential. The voltage across the flying capacitor is also regulated by adjusting the switching duty cycles of two PWM signals, which varies the operation time of redundant switching states in each switching period. Simulation and experimental results are presented to verify the validity of this method.
机译:五电平有源中性点钳位(5L-ANPC)转换器是大功率中压电机驱动器的一种有吸引力的拓扑。本文提出了一种用于5L-ANPC转换器的电容器电压平衡方法,包括直流链路电容器和飞跨电容器的电压平衡。为了确保5L-ANPC转换器的串联或高压开关在基本频率下工作,而其他开关在恒定开关频率下工作,使用相移脉冲宽度调制来控制此转换器。研究了平均中性点电流与零序电压之间的关系,并计算出最佳零序电压来调节中性点电势。通过调节两个PWM信号的开关占空比,还可以调节跨接电容器两端的电压,从而改变每个开关周期中冗余开关状态的工作时间。仿真和实验结果验证了该方法的有效性。

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