首页> 外文会议>2019 10th International Conference on Power Electronics and ECCE Asia >A Feeder Impedance Identification Based Droop Control Method for Accurate Reactive Power Sharing in Islanded Microgrids
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A Feeder Impedance Identification Based Droop Control Method for Accurate Reactive Power Sharing in Islanded Microgrids

机译:基于馈线阻抗识别的下垂控制方法,用于孤岛微电网的精确无功分配

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Due to the unmatched feeder impedance, the conventional voltage and frequency droop control method is unable to accurately allocate the output reactive power of DG units in proportion to their power ratings. To solve this issue, this paper has proposed a feeder impedance identification based droop control method. Firstly, the relationship among the reactive power sharing, reactive power droop slope and feeder impedance in islanded microgrids is illustrated. An online feeder impedance identification method is subsequently adopted to modify the reactive power droop slope of DG unit. In this way, the effect of unmatched feeder impedance on reactive power sharing is eliminated without communication among DG units. Experimental results implemented on an islanded microgrid apparatus have validated the feasibility of the proposed droop control method.
机译:由于馈线阻抗不匹配,传统的电压和频率下降控制方法无法根据DG单元的额定功率准确分配其输出无功功率。为了解决这个问题,本文提出了一种基于馈线阻抗识别的下垂控制方法。首先,阐述了孤岛微电网中无功功率共享,无功功率下降斜率和馈线阻抗之间的关系。随后采用在线馈线阻抗识别方法来修改DG单元的无功功率下降斜率。这样,消除了馈线阻抗不匹配对无功功率共享的影响,而无需在DG单元之间进行通信。在孤岛微电网设备上实现的实验结果验证了所提出的下垂控制方法的可行性。

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