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首页> 外文期刊>Journal of power electronics >Improved Reactive Power Sharing for Parallel-operated Inverters in Islanded Microgrids
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Improved Reactive Power Sharing for Parallel-operated Inverters in Islanded Microgrids

机译:孤岛微电网中并联逆变器的改进的无功功率共享

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The unequal impedances of the interconnecting cables between paralleled inverters in the island mode of microgrids cause inaccurate reactive power sharing when the traditional droop control is used. Many studies in the literature adopt low speed communications between the inverters and the central control unit to overcome this problem. However, the losses of this communication link can be very detrimental to the performance of the controller. This paper proposes an improved reactive power-sharing control method. It employs infrequent measurements of the voltage at the point of common coupling (PCC) to estimate the output impedance between the inverters and the PCC and then readjust the voltage droop controller gains accordingly. The controller then reverts to being a traditional droop controller using the newly calculated gains. This increases the immunity of the controller against any losses in the communication links between the central control unit and the inverters. The capability of the proposed control method has been demonstrated by simulation and experimental results using a laboratory scale microgrid.
机译:当使用传统的下垂控制时,在微电网的孤岛模式下,并联逆变器之间的互连电缆的阻抗不相等会导致无功功率分配不准确。文献中的许多研究都采用了变频器和中央控制单元之间的低速通信来克服这一问题。但是,此通信链接的丢失可能对控制器的性能非常不利。本文提出了一种改进的无功共享控制方法。它不经常测量公共耦合点(PCC)处的电压,以估算逆变器和PCC之间的输出阻抗,然后相应地重新调整电压降控制器的增益。然后,控制器使用新计算的增益恢复为传统的下降控制器。这提高了控制器抵抗中央控制单元和逆变器之间的通信链路中任何损耗的抵抗力。使用实验室规模的微电网通过仿真和实验结果证明了所提出的控制方法的能力。

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