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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Droop control method for load share and voltage regulation in high-voltage microgrids
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Droop control method for load share and voltage regulation in high-voltage microgrids

机译:高压微电网负荷分担和电压调节的下垂控制方法

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When the line impedance is considered in the microgrid, the accuracy of load sharing will decrease. In this paper, the impact of line impedance on the accuracy of load sharing is analyzed. A robust droop control for a high-voltage microgrid is proposed based on the signal detection on the high-voltage side of the coupling transformer. For a high-voltage microgrid, the equivalent impedance of coupling transformer connecting distributed generator with the grid is usually the dominate factor. Compared with the conventional droop control strategy, the proposed control method in this paper detects the feedback signal from the high-voltage side of the coupling transformer. The impact of line impedance on the load sharing accuracy can be mitigated significantly. The proposed droop control only changes the detection point of the feedback signal, thus it is easy to be implemented. The PSCAD/EMTDC simulation results show the effectiveness of the proposed robust droop control concept in load sharing and voltage regulation with highly accuracy.
机译:当在微电网中考虑线路阻抗时,负载分配的精度将降低。本文分析了线路阻抗对负载分配精度的影响。基于耦合变压器高压侧的信号检测,提出了一种高压微电网的鲁棒下垂控制。对于高压微电网,将分布式发电机与电网连接的耦合变压器的等效阻抗通常是主要因素。与传统的下垂控制策略相比,本文提出的控制方法可以检测耦合变压器高压侧的反馈信号。线路阻抗对负载共享精度的影响可以大大减轻。所提出的下垂控制仅改变反馈信号的检测点,因此易于实现。 PSCAD / EMTDC仿真结果表明,所提出的鲁棒下垂控制概念在负载共享和电压调节中具有很高的准确性。

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