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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Active Damping Control of a High-Power PWM Current-Source Rectifier for Line-Current THD Reduction
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Active Damping Control of a High-Power PWM Current-Source Rectifier for Line-Current THD Reduction

机译:用于降低线电流THD的大功率PWM电流源整流器的有源阻尼控制

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摘要

The use of active damping to reduce the total harmonic distortion (THD) of the line current for medium-voltage (2.3-7.2 kV) high-power pulsewidth-modulation (PWM) current-source rectifiers is investigated. The rectifier requires an LC filter connected at its input terminals, which constitutes an LC resonant mode. The lightly damped LC filter is prone to series and parallel resonances when tuned to a system harmonic either from the utility or from the PWM rectifier. These issues are traditionally addressed at the design stage by properly choosing the filter resonant frequency. This approach may result in a limited performance since the LC resonant frequency is a function of the power system impedance, which usually varies with power system operating conditions. In this paper, an active damping control method is proposed for the reduction in line current THD of high-power current-source rectifiers operating at a switching frequency of only 540 Hz. Two types of LC resonances are investigated: the parallel resonance excited by harmonic currents drawn by the rectifier and the series resonance caused by harmonic pollution in the source voltage. It is demonstrated through simulation and experiments that the proposed active damping control can effectively reduce the line-current THD caused by both parallel and series resonances.
机译:对于中压(2.3-7.2 kV)大功率脉宽调制(PWM)电流源整流器,研究了使用主动阻尼来降低线路电流的总谐波失真(THD)。整流器需要在其输入端子处连接一个LC滤波器,从而构成LC谐振模式。当通过市电或PWM整流器调谐到系统谐波时,轻度衰减的LC滤波器容易产生串联和并联谐振。传统上,这些问题是在设计阶段通过适当选择滤波器谐振频率来解决的。该方法可能会导致性能受限,因为LC谐振频率是电力系统阻抗的函数,通常随电力系统工作条件而变化。本文提出了一种主动阻尼控制方法,以降低工作在仅540 Hz开关频率下的大功率电流源整流器的线路电流THD。研究了两种类型的LC谐振:整流器汲取的谐波电流激发的并联谐振和源电压中谐波污染引起的串联谐振。通过仿真和实验表明,所提出的主动阻尼控制可以有效地减小由并联和串联谐振引起的线电流THD。

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