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A novel current control scheme of grid converters for small PMSG wind turbines under grid voltage distortion

机译:电网电压失真下小型PMSG风力涡轮机电网转换器的新型电流控制方案

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摘要

This paper proposes a robust control scheme for the grid-connected single-phase converter of small permanentmagnet synchronous generator (PMSG) wind turbines under distorted grid voltages. The single-phase grid current is controlled to be sinusoidal by eliminating the high-order harmonic components. For this, the fundamental and high-order harmonic components of the grid voltage and current are extracted by the composite observer without a delay. Then, a phase-lock loop (PLL) scheme is employed for the fundamental component of the grid voltage to detect the phase angle of the grid voltage for the grid current controller. The multi-PR (proportional-resonant) controllers are used to regulate the grid current. In the system, the boost converter controls the DC-link voltage and the grid converter controls the generator output power. The validity of the proposed scheme is verified by the simulation and experimental results.
机译:本文提出了一种坚固的控制方案,用于小型永久性同步发电机(PMSG)风力涡轮机的电网连接的单相转换器的鲁棒控制方案。通过消除高阶谐波部件,控制单相网电流是正弦的。为此,通过复合观测器提取电网电压和电流的基本和高级谐波分量,而不会延迟。然后,采用锁相环(PLL)方案用于网格电压的基本分量,以检测网格电流控制器的电网电压的相位角。多Pr(比例谐振)控制器用于调节网格电流。在系统中,升压转换器控制DC-LINK电压,并且电网转换器控制发电机输出功率。通过模拟和实验结果验证了所提出的方案的有效性。

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