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Frequency-Division Virtual Impedance Shaping Control Method for Grid-Connected Inverters in a Weak and Distorted Grid

机译:弱和扭曲网格网格连接逆变器频分虚拟阻抗整形控制方法

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摘要

Grid-connected current quality is seriously affected by the low-order background harmonics in the gird-inverter dynamic system. The point of common coupling voltage feedforward impedance reshaping method of the grid-connected inverter is generally applied to solve this problem, however about 90 degrees phase lag of the inverter output impedance is brought in, which would deteriorate the adaptability of the inverter to the weak grid. To solve this problem, this article proposes a novel frequency-division virtual impedance shaping method, which shapes the output impedance of the grid-connected inverter with different coefficients in different frequency bands, respectively. The basic principles, parameters design, and application analysis are studied in detail. With the proposed scheme, the grid-connected inverter can be equipped with strong adaptability to a wide range of grid impedance and suppression ability to the background voltage harmonics simultaneously. Theoretical analysis and experimental results confirm the effectiveness of the proposed method.
机译:电网连接的电流质量受到晶逆变频器动态系统中的低阶背景谐波的严重影响。通常应用了网格连接的逆变器的公共耦合电压前馈阻抗的点蚀刻方法以解决该问题,然而,逆变器输出阻抗的约90度阶段滞后,这会使逆变器对弱的适应性劣化网格。为了解决这个问题,本文提出了一种新的频分虚拟阻抗成形方法,其在不同频带中具有不同系数的不同系数来构造网格连接的逆变器的输出阻抗。详细研究了基本原理,参数设计和应用分析。采用该方案,电网连接的逆变器可以配备强适应性,对背景电压谐波同时进行广泛的电网阻抗和抑制能力。理论分析和实验结果证实了该方法的有效性。

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