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DC ripple current reduction on a single-phase PWM voltage-source rectifier

机译:单相PWM电压源整流器上的直流纹波电流降低

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摘要

A novel topology of single-phase pulsewidth modulation (PWM) voltage-source rectifier capable of achieving not only a sinusoidal input current, but also a zero-ripple output current, is presented. The rectifier consists of a conventional single-phase PWM voltage-source rectifier, a pair of additional switches and an inductor. Hence, the proposed rectifier requires neither a large DC capacitor nor a passive L-C resonant circuit. The input current control is achieved by the conventional PWM current control technique. However, DC ripple current reduction control is difficult because one of the switching legs in the DC ripple current reduction circuit is shared with the PWM rectifier circuit. Two control methods, referred to here as the DC C inductor method and the AC inductor method, are proposed for DC ripple reduction, and the characteristics of these control methods are discussed. These control methods are implemented using a microprocessor, and the effectiveness of the circuit is confirmed experimentally. This rectifier has useful applications in uninterruptible power systems and DC power supplies, especially for cases in which the batteries are connected in parallel to the DC line.
机译:提出了一种新颖的单相脉宽调制(PWM)电压源整流器拓扑结构,该拓扑结构不仅可以实现正弦输入电流,而且还可以实现零纹波输出电流。该整流器由常规的单相PWM电压源整流器,一对附加开关和一个电感器组成。因此,提出的整流器既不需要大的直流电容器,也不需要无源的L-C谐振电路。输入电流控制是通过传统的PWM电流控制技术实现的。但是,直流波纹电流减小控制是困难的,因为直流波纹电流减小电路中的开关支路之一与PWM整流器电路共享。提出了两种控制方法,分别称为DC C电感器方法和AC电感器方法,以降低DC纹波,并讨论了这些控制方法的特性。这些控制方法是使用微处理器实现的,电路的有效性已通过实验得到证实。该整流器在不间断电源系统和直流电源中有有用的应用,尤其是在电池与直流线路并联连接的情况下。

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