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Three-Phase HFL-DVR With Independently Controlled Phases

机译:具有独立控制相位的三相HFL-DVR

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Conventional dynamic voltage restorers (DVRs) are connected to the power grid through power-frequency transformers. These bulky and costly transformers cause voltage drop and power losses. In this paper, a high-frequency-link dynamic voltage restorer (HFL-DVR) is proposed based on transformer-isolated topologies. This topology facilitates independent operation conditions for each phase in a three-phase system. It enjoys relatively low cost, low losses, and small size. Also, it is free from transformer inrush currents. Small-signal ac equivalent circuit for the power stage including HFL-DVR is derived based on an averaged modeling approach. Transfer functions are obtained to study the effect of inputs such as dc-link voltage, grid voltage, and the load current on the output of HFL-DVR. In order to obtain acceptable properties such as transient overshoot, setting time, and steady-state error, a PID controller is added to the system. This shows that the effect of disturbances on the output of HFL-DVR can be reduced. The experimental results are obtained from a 220V/50Hz HFL-DVR setup. The simulation and experimental results have been compared to verify theoretical aspect of the proposed DVR for both symmetrical and asymmetrical voltage sag conditions.
机译:常规的动态电压恢复器(DVR)通过工频变压器连接到电网。这些笨重且昂贵的变压器会引起电压降和功率损耗。本文提出了一种基于变压器隔离拓扑的高频链路动态电压恢复器(HFL-DVR)。这种拓扑结构有利于三相系统中各相的独立运行条件。它具有相对较低的成本,较低的损耗和较小的尺寸。而且,它没有变压器浪涌电流。基于平均建模方法,得出了包括HFL-DVR在内的功率级小信号交流等效电路。获得传递函数以研究输入(例如直流母线电压,电网电压和负载电流)对HFL-DVR输出的影响。为了获得可接受的属性,例如瞬态过冲,设置时间和稳态误差,将PID控制器添加到系统中。这表明可以减少干扰对HFL-DVR输出的影响。实验结果是从220V / 50Hz HFL-DVR设置获得的。比较了仿真结果和实验结果,以验证所提出的DVR在对称和非对称电压骤降条件下的理论方面。

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