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Control strategy for microgrid under three-phase unbalance condition

机译:三相不平衡条件下的微电网控制策略

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Microgrid(MG) is generally developed at utility terminal which contains lots of unbalanced loads and distributed generations(DGs). The interaction between MG and the unbalance loads or DGs will degrades the control performance of interfaced inverter in MG and dramatically leads to MG voltage unbalance. In this paper, a negative-sequence compensation based three-phase voltage unified correction strategy is proposed. While MG operates in islanded mode, a positive virtual impedance control is used to eliminate the negative voltage resulted from the negative-sequence current,and then a positive-sequence voltage control loop and negative-sequence control loop are used to improve the inverter control performance. While MG operates in grid-tied mode,the inverter operates as a negative-sequence current source to compensate the negative-sequence currents of loads to guarantee the point of common coupling(PCC) voltage balance.By using the proposed strategy, the voltage control performance of inverter can be improved;the MG power quality can be enhanced significantly. Simulation and experimental results verify the effectiveness of the proposed method.
机译:MicroGrid(MG)通常在实用终端开发,其中包含大量不平衡的负载和分布代(DGS)。 MG与不平衡负载或DG的相互作用将降低MG中接口逆变器的控制性能,并显着导致MG电压不平衡。本文提出了一种基于负序补偿的三相电压统一校正策略。虽然MG在孤岛模式下运行,但是正则虚拟阻抗控制用于消除由负序电流产生的负电压,然后使用正序电压控制回路和负序控制回路来改善逆变器控制性能。虽然MG以网格绑定模式运行,但逆变器用作负序电流源,以补偿负载的负序电流,以保证公共耦合(PCC)电压余额。使用所提出的策略,电压控制可以提高逆变器的性能;可以显着提高Mg电力质量。仿真和实验结果验证了该方法的有效性。

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