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Dynamic Voltage Restorer Based on Three-Phase Inverters Cascaded Through an Open-End Winding Transformer

机译:基于三相逆变器的无级绕组变压器级联的动态电压恢复器

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This paper investigates a dynamic voltage restorer (DVR) composed of two conventional three-phase inverters series cascaded through an open-end winding (OEW) transformer, denominated here DVR-OEW. The DVR-OEW operating with either equal or different dc-link voltages is examined. The proposed topology aims to regulate the voltage at the load side in the case of voltage sags/swells, distortion, or unbalance at the grid voltage. A suitable control strategy is developed, including space-vector analysis, level-shifted PWM and its equivalent optimized single-carrier PWM, as well as the operating principles and characteristics of the DVR. Comparisons among the DVR-OEW and conventional configurations, including a neutral-point clamped converter-based DVR, are furnished. The main advantages of the DVR-OEW compared to the conventional topologies lie on: 1) reduced harmonic distortion, 2) reduced converter losses, and 3) reduced voltage rating of the power switches. Simulated and experimental results are presented to validate the theoretical studies.
机译:本文研究了一种动态电压恢复器(DVR),该动态电压恢复器由两个常规的三相逆变器组成,这些逆变器通过级联的开放式绕组(OEW)变压器级联,此处称为DVR-OEW。检查了以相同或不同的直流链路电压工作的DVR-OEW。所提出的拓扑结构旨在在电网电压骤降/骤升,失真或不平衡的情况下调节负载侧的电压。开发了一种合适的控制策略,包括空间矢量分析,电平移位PWM及其等效的优化单载波PWM,以及DVR的工作原理和特性。提供了DVR-OEW与常规配置(包括基于中性点钳位转换器的DVR)之间的比较。与传统拓扑相比,DVR-OEW的主要优势在于:1)降低谐波失真,2)降低转换器损耗,以及3)降低电源开关的额定电压。仿真和实验结果被提出来验证理论研究。

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