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Performance Improvement of the Unbalanced Voltage Compensation in Islanded Microgrid Based on Small-Signal Analysis

机译:基于小信号分析的孤岛微电网不平衡电压补偿的性能提高

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摘要

A low-voltage microgrid is naturally three-phase unbalance due to the connection of unbalanced loads. Voltage unbalance compensation (VUC) strategies of inverters have been proposed to compensate the voltage unbalance on the point of common coupling. However, the small-signal analysis of these VUC strategies has not been investigated in a microgrid with multiple inverters, which is due to the difficulty of the state-space modeling for unbalanced microgrids. This lack of discussion may result in a poor performance of the microgrid when the parameters of VUCs are not well designed. To investigate the dynamic behavior of the unbalanced microgrid with VUC strategies, this article develops a detailed state-space model for an unbalanced microgrid using the dynamic phasor method. Then, based on the developed model, small-signal analysis is carried out to investigate the effect of the VUC control on the dynamic behavior of a microgrid. It is found that a poor design of the VUC controllers may result in the instability of the microgrid. Finally, an improved compensation method with better compensation performance is proposed. Experimental results are used to validate the effectiveness of the proposed method.
机译:由于不平衡负载的连接,低压微电池是自然的三相不平衡。已经提出了逆变器的电压不平衡补偿(VUC)策略以补偿常见耦合点的电压不平衡。然而,这些VUC策略的小信号分析尚未在具有多个逆变器的微电网中进行研究,这是由于不平衡微电网的状态空间建模的难度。当Vucs的参数没有精心充分时,这种缺乏讨论可能导致微电网的表现不佳。为了探讨使用VUC策略的不平衡微电网的动态行为,本文使用动态相量方法开发用于不平衡微电网的详细状态空间模型。然后,基于开发的模型,进行小信号分析,以研究VUC控制对微电网的动态行为的影响。发现VUC控制器的差的设计可能导致微电网的不稳定性。最后,提出了一种具有更好补偿性能的改进补偿方法。实验结果用于验证提出方法的有效性。

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