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Improved Reactive Power Sharing and Harmonic Voltage Compensation in Islanded Microgrids Using Resistive-Capacitive Virtual Impedance

机译:使用电阻电容虚拟阻抗改善岛状微电网中的无功功率共享和谐波电压补偿

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Due to the mismatched line impedance among distributed generation units (DGs) and uncontrolled harmonic current, the droop controller has a number of problems such as inaccurate reactive power sharing and voltage distortion at the point of common coupling (PCC). To solve these problems, this paper proposes a resistive-capacitive virtual impedance control method. The proposed control method modifies the DG output impedance at the fundamental and harmonic frequencies to compensate the mismatched line impedance among DGs and to regulate the harmonic current. Finally, reactive power sharing is accurately achieved, and the PCC voltage distortion is compensated. In addition, adaptively controlling the virtual impedance guarantees compensation performance in spite of load changes. The effectiveness of the proposed control method was verified by experimental results.
机译:由于分布式发电单元(DGS)之间的不匹配线阻抗和不受控制的谐波电流,下垂控制器具有许多问题,例如在公共耦合点(PCC)处的无准反应功率共享和电压失真。 为了解决这些问题,本文提出了一种电阻电容虚拟阻抗控制方法。 所提出的控制方法以基本和谐波频率修改DG输出阻抗,以补偿DGS之间的不匹配线阻抗并调节谐波电流。 最后,准确地实现了无功功率共享,并且补偿了PCC电压失真。 此外,尽管有负载变化,自适应地控制虚拟阻抗保证补偿性能。 通过实验结果验证了所提出的控制方法的有效性。

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