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Control of Three-Phase Grid Converters Based on Composite Observer for Unbalanced and Distorted Grid Voltage

机译:基于复合观测器的三相电网转换器控制不平衡和扭曲电网电压的三相网格转换器

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In this paper, a novel control scheme to mitigate the grid current distortion due to grid voltage disturbance is proposed for a grid-connected voltage-source converter (VSC) with inductor-capacitor-inductor (LCL) filters. Voltage unbalance and harmonics in three-phase systems cause the DClink voltage ripples and the grid current distortion. In order to mitigate the input current distortion and the DC-link voltage ripples, the multi-loop harmonic current controllers are applied to regulate positive-and negative-sequence currents as well as high-order harmonic currents by proportional-integral (PI) and proportional-resonance (PR) regulators, respectively. In addition, a new active damping method which is the PR controllers regulating the grid current at a resonant frequency is employed to increase the control stability of the VSC with LCL filter. The resonant grid current component is extracted by the band-pass filters (BPF). Furthermore, the positive-and negative-sequence and harmonic components of grid voltages and currents are obtained by a composite observer. The simulation and experimental results have been illustrated to validate the effectiveness of the proposed method.
机译:在本文中,一种新颖的控制方案以减轻电网电流失真由于电网电压扰动,提出了并网电压源转换器(VSC)与电感器 - 电容器 - 电感器(LCL)滤波器。电压不平衡并且在三相系统的谐波引起的dcLINK电压纹波和电网电流失真。为了减轻输入电流失真和DC链路电压纹波,多环的谐波电流控制器施加通过比例 - 积分(PI)调节正和负序电流和高次谐波电流和比例 - 共振(PR)调节剂,分别。另外,采用一种新的主​​动阻尼方法,该方法是PR控制器调节所述电网电流在谐振频率,以增加与LCL滤波器的VSC的控制的稳定性。谐振电网电流分量被带通滤波器(BPF)萃取。此外,电网电压和电流的正序和负序分量和谐波分量是由复合观察者获得。仿真和实验结果已经示出,以验证所提出的方法的有效性。

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