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A novel grid voltage feedforward control strategy for grid-connected inverters in weak grid

机译:弱电网中并网逆变器的新型电网电压前馈控制策略

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The grid-connected inverter with a LCL filter has the ability of attenuating the high-frequency current harmonics. The current distortion caused by harmonics in the grid voltage is difficult to be eliminated. Applying proportion feedforward of the grid voltage can suppress the effect of grid voltage harmonics. However, weak grid is commonly seemed as a voltage source which contains a grid impedance and background harmonics, the closed-loop control and the proportion feedforward control are coupling with each other because of the existence of grid impedance. Proportion feedforward control will introduce a positive feedback loop, which will worsen the quality of the system. In this paper, a novel grid voltage feedforward control strategy was proposed. This novel control strategy is to add a low-pass filter to the grid voltage feedforward channel, which could improve the adaptability to the grid impedance. The correctness of the theoretical analysis and effectiveness of the proposed control strategy are verified by the simulation and experimental results.
机译:带有LCL滤波器的并网逆变器具有衰减高频电流谐波的能力。电网电压中的谐波引起的电流畸变很难消除。施加电网电压的比例前馈可以抑制电网电压谐波的影响。然而,弱电网通常被视为包含电网阻抗和背景谐波的电压源,由于电网阻抗的存在,闭环控制和比例前馈控制相互耦合。比例前馈控制将引入正反馈回路,这将使系统质量变差。本文提出了一种新颖的电网电压前馈控制策略。这种新颖的控制策略是在电网电压前馈通道上增加一个低通滤波器,从而可以提高对电网阻抗的适应性。仿真和实验结果验证了理论分析的正确性和所提出控制策略的有效性。

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