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Survey of Inverter Topologies Implemented in Dynamic Voltage Restorers

机译:动态电压恢复器中实现的逆变器拓扑调查

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Voltage disturbances which affect the stability of electrical networks are the most important power quality problems. The most known voltage disturbances are voltage sag and swell in distribution systems. Dynamic Voltage Restorer (DVR) is the most effective device to compensate these voltage disturbances among the custom power devices. The basic structure of a conventional DVR consists of an inverter, dc link capacitor, injection transformer and filter. The major component in DVR is inverter that generates controlled voltage to compensate voltage sag/swell and other problems such as flicker, interruption and harmonics. Each inverter implemented in DVR has individual properties such as voltage level, unbalanced compensation capability and/or dc link capacitor requirement. This paper aims a comprehensive review on different inverter topologies according to the number of phases, size, voltage level and structure of DVR. In addition, individual properties of inverters are presented in this study.
机译:影响电网稳定性的电压干扰是最重要的电力质量问题。最着名的电压干扰是电压下垂和分配系统的膨胀。动态电压恢复器(DVR)是最有效的设备,以补偿定制功率器件之间的这些电压干扰。传统DVR的基本结构包括逆变器,直流连接电容,注射互感器和滤波器。 DVR中的主要组件是变频器,可产生控制电压,以补偿电压凹槽/膨胀等问题,例如闪烁,中断和谐波。在DVR中实现的每个逆变器都具有各个属性,如电压电平,不平衡补偿功能和/或直流链路电容器要求。本文旨在根据DVR的阶段,尺寸,电压水平和结构的不同逆变器拓扑进行全面审查。此外,本研究提出了逆变器的个性化性质。

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