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A Novel Grid-Connected Harmonic Current Suppression Control for Autonomous Current Sharing Controller-Based AC Microgrids

机译:基于电流共享控制器的交流微电网的新型并网谐波电流抑制控制

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Since the power quality of feed-in grid current in a grid-connected microgrid (GCMG) can be influenced by a distorted utility grid, a novel feed-in grid harmonic current suppression control strategy is proposed in this paper. A feed-in grid current resonant controller-based harmonic compensation loop is integrated to the original autonomous current sharing controller. The feed-in grid harmonic current compensation loop that cooperated with the parallel resonant controllers in voltage control loop can effectively reduce the system equivalent output admittance at selected harmonic frequencies. Thus, the total harmonic distortion of feed-in grid current can be significantly decreased. Simulation and experimental results from a three-voltage-controlled-inverter-based GCMG verify the effectiveness of the proposed controller.
机译:由于并网电网的畸变会影响并网微电网(GCMG)中的馈入电网电流的电能质量,因此提出了一种新颖的馈入电网谐波电流抑制控制策略。基于馈入电网电流谐振控制器的谐波补偿环路已集成到原始自主电流共享控制器中。与电压控制环路中的并联谐振控制器配合使用的馈入电网谐波电流补偿环路可以有效降低选定谐波频率下的系统等效输出导纳。因此,可以显着降低馈入电网电流的总谐波失真。基于三电压控制逆变器的GCMG的仿真和实验结果验证了所提出控制器的有效性。

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