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A Modular Isolated Topology for Instantaneous Reactive Power Compensation

机译:瞬时无功功率补偿的模块化隔离拓扑

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This paper presents a novel topology for instantaneous reactive power compensation. The topology is derived from the Dynamic-Current or Dyna-C, which is a patented power converter capable of transferring energy for two or multiterminal dc, single- and/or multiphase ac systems. The proposed topology, named dynamic VAr compensator (DVC), has a current source power conversion stage and can provide instantaneous leading or lagging reactive power. The proposed DVC has three individual bridges coupled through a three-winding high-frequency transformer. It has a modular structure that allows it to be series stacked for medium-voltage applications. In addition, the high-frequency Galvanic isolation link provides interphase fault isolation among the three phases. The circuit eliminates the use of electrolytic capacitors for bulk energy storage, which usually lowers life and reliability. Operating principles, theoretical analysis, and design of the proposed topology are described. The converter functionality is validated through simulation as well as experimental results.
机译:本文提出了一种用于瞬时无功功率补偿的新型拓扑。该拓扑结构源自动态电流或Dyna-C,这是获得专利的功率转换器,能够为两个或多个端子直流,单相和/或多相交流系统传输能量。提出的拓扑称为动态VAr补偿器(DVC),具有电流源功率转换级,可以提供瞬时超前或滞后无功功率。提议的DVC具有通过一个三绕组高频变压器耦合的三个单独的电桥。它具有模块化结构,可以串联堆叠以用于中压应用。此外,高频电流隔离链路可在三相之间提供相间故障隔离。该电路消除了将电解电容器用于大容量能量存储的问题,这通常会降低寿命和可靠性。描述了工作原理,理论分析和拟议拓扑的设计。转换器功能通过仿真和实验结果得到验证。

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