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A new method of damping harmonic resonance at the DC link in a large-capacity rectifier-inverter system

机译:大容量整流器-逆变器系统中抑制直流链路谐波谐振的新方法

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This paper proposes a new method of damping harmonic resonance in the DC link of a large-capacity rectifier-inverter system, such as in rapid-transit railways. A voltage-source PWM converter is connected in series to the DC capacitor of the rectifier through a matching transformer, acting as a damping resistor to the DC capacitor current. No filters are needed to extract harmonic components from the DC capacitor current. This results in a quick response and highly stable damping. The relationship between the control gain of the PWM converter and the required rating is theoretically discussed. We show that the required rating is less than one-thousandth of that previously proposed. In particular, regenerating the power consumed by the PWM converter is very important because of the large power in practical systems. Normally, an additional PWM inverter is connected to the DC bus of the PWM converter to regenerate the consumed power. The additional inverter regenerates the DC power to the AC source through a transformer. This method, however, makes the damping circuit complex, thus the proposed method for the DC-link harmonic resonance is less practicable. In this paper, a simple and novel scheme that utilizes the DC-link voltage of the rectifier as a DC source for the PWM converter is proposed. The excellent practicability of the proposed damping method with the novel regenerating scheme is confirmed using digital computer simulation.
机译:本文提出了一种在大容量整流器-逆变器系统的直流环节中抑制谐波谐振的新方法,例如在快速铁路中。电压源PWM转换器通过匹配的变压器串联到整流器的DC电容器,该变压器充当DC电容器电流的阻尼电阻。无需滤波器即可从直流电容器电流中提取谐波分量。这导致快速响应和高度稳定的阻尼。理论上讨论了PWM转换器的控制增益与所需额定值之间的关系。我们表明所需的评级小于以前提出的评级的千分之一。特别是,由于实际系统中的大功率,再生PWM转换器消耗的功率非常重要。通常,将额外的PWM逆变器连接到PWM转换器的DC总线以再生消耗的功率。附加的逆变器通过变压器将直流电再生为交流电。然而,该方法使阻尼电路复杂,因此所提出的用于直流母线谐波谐振的方法不太可行。本文提出了一种简单新颖的方案,该方案利用整流器的直流母线电压作为PWM转换器的直流电源。利用数字计算机仿真证实了所提出的具有新型再生方案的阻尼方法的出色实用性。

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