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Reactive Power Sharing and Voltage Harmonic Distortion Compensation of Droop Controlled Single Phase Islanded Microgrids

机译:下降控制的单相岛状微电网的无功共享和电压谐波失真补偿

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When paralleling multiple inverters that are capable of operating as an island, the inverters typically employ the droop control scheme. Traditional droop control enables the decentralized regulation of the local voltage and frequency of the microgrid by the inverters. The droop method also enables the inverters to share the real and reactive power required by the loads. This paper focuses on some of the limitations of parallel islanded single phase inverters using droop control. Algorithms with the aim to address the following limitations in islanded operation were proposed: reactive power sharing and reduction of the voltage harmonic distortion at the point of common coupling (PCC). Experimental results were then presented to show the suitability of the proposed algorithms in achieving reactive power sharing and in improving the voltage harmonic distortion at the PCC.
机译:当并联多个可作为孤岛运行的逆变器时,这些逆变器通常采用下垂控制方案。传统的下垂控制可通过逆变器分散控制微电网的本地电压和频率。下垂方法还使逆变器可以共享负载所需的有功功率和无功功率。本文着重介绍了使用下降控制的并联孤岛单相逆变器的一些局限性。提出了旨在解决孤岛运行中的以下限制的算法:无功功率共享和公共耦合点(PCC)处的电压谐波失真的减小。然后提出实验结果以表明所提出的算法在实现无功功率共享和改善PCC处的电压谐波失真方面的适用性。

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