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Design and experimentation of a dynamic voltage restorer capable of significantly reducing an energy-storage element

机译:动态电压恢复器的设计与实验能力大幅减少储能元件

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This paper deals with a dynamic voltage restorer (DVR), or a voltage-sag compensator, which consists of a set of series and shunt converters connected back-to-back, three series transformers, and a dc capacitor installed on the common dc link. The DVR is characterized by installing the series converter on the source side and the shunt converter on the load side. This system configuration allows the use of an extremely small dc capacitor intended for smoothing the common dc-link voltage. This paper provides a design procedure of the dc capacitor under a voltage-sag condition, and proposes a control method for the series converter, which is capable of reducing the voltage ratings of both the series converter and the series transformers. Experimental results obtained from a 200-V, 5-kW laboratory system are shown to confirm the validity of the design procedure, and the effectiveness of the control method.
机译:本文处理了动态电压恢复器(DVR)或电压凹槽补偿器,包括一组系列和分流转换器,连接背对背,三个系列变压器和安装在公共直流链路上的直流电容器。 DVR的特点是通过在负载侧安装源侧和分流转换器上安装串联转换器。该系统配置允许使用用于平滑公共直流电电压的极小直流电容。本文提供了DC电容在电压下的情况下的设计步骤,并提出了一种用于串联转换器的控制方法,其能够降低串联转换器和串联变压器的电压额定值。从200V,5-kW实验室系统获得的实验结果显示为确认设计程序的有效性,以及控制方法的有效性。

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