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A Novel Flexible Capacitor Voltage Control Strategy for Variable-Speed Drives With Modular Multilevel Converters

机译:具有模块化多电平转换器的变速驱动器的新型灵活电容器电压控制策略

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Modular multilevel converter (MMC) is very popular in medium-voltage applications, such as high-voltage direct current transmission, static Var generator, and motor drives. The arm capacitor voltage of MMC is usually constant and the output voltage is adjusted by regulating the pulse width modulation (PWM) index for switches in previous studies. In this paper, a novel flexible capacitor voltage control strategy for MMC as motor drives was proposed, with which the arm capacitor voltage was controlled flexibly according to the motor speed, by regulating the dc component and ac component of the PWM reference signal, and unsymmetrical control was used for the control of the upper arm and the lower arm in MMC. With the proposed control strategy, the circuit efficiency and the precision of the output voltage of the converter could be improved when the motor speed was low, and di/dt and d v/dt of the motor windings could be decreased. These proposals were implemented on a laboratory prototype, and experiments were carried out. The validity of the control strategy under both steady and dynamic states was verified.
机译:模块化多电平转换器(MMC)在中压应用中非常流行,例如高压直流输电,静态无功发生器和电动机驱动器。 MMC的臂电容器电压通常是恒定的,并且通过调节先前研究中的开关的脉冲宽度调制(PWM)指数来调节输出电压。本文提出了一种新颖的用于MMC电机驱动器的柔性电容器电压控制策略,该策略通过调节PWM参考信号的直流分量和交流分量以及不对称性来根据电机速度灵活地控制臂电容器电压。控件用于控制MMC中的上臂和下臂。利用所提出的控制策略,可以在电动机速度较低时提高电路效率和转换器输出电压的精度,并可以减小电动机绕组的di / dt和d v / dt。这些建议是在实验室原型上实施的,并进行了实验。验证了稳态和动态状态下控制策略的有效性。

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