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Controller design for three-phase inverter with power unbalanced loads applied in microgrids

机译:三相逆变器具有电力不平衡负载的三相逆变器的控制器设计

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In this paper, a control scheme for three-phase inverter applied in microgrids is presented, which ensures the three-phase output voltages balanced under power unbalanced loads. Based on the analysis of the output impedance, a proportional-resonant controller is utilized in the inner current-loop to reduce negative-sequence impedance of the inverter. Thus, the controller compensates the voltage distortions caused by 2ω disturbances under power unbalanced loads in synchronous reference frame. Furthermore, by implementing the virtual impedance with a notch filter in microgrids, a trade-off performance between the unbalanced power sharing and the output voltage quality is achieved very well. The effectiveness of the proposed control scheme has been validated by a prototype consisting of two-40-kVA parallel-connected three-phase inverter system.
机译:本文提出了一种在微电网中施加的三相逆变器的控制方案,其确保了在功率不平衡负载下平衡的三相输出电压。基于对输出阻抗的分析,在内部电流环中使用比例谐振控制器,以降低逆变器的负序阻抗。因此,控制器补偿了同步参考帧中的功率不平衡负载下的2Ω干扰引起的电压失真。此外,通过用微电网中的陷波滤波器实现虚拟阻抗,非常好地实现了不平衡电力共享和输出电压质量之间的权衡性能。所提出的控制方案的有效性已经通过由两-40-kVA平行连接的三相逆变器系统组成的原型来验证。

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