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Optimal Robust Control of LCL-type Grid-Connected Voltage Source Inverters against Grid Impedance Fluctuations

机译:LCL型并网电压源逆变器针对电网阻抗波动的最优鲁棒控制

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LCL filters are used in grid-connected voltage source inverters (GC-VSIs) due to their lower cost and higher efficiency. These filters attenuate high order harmonics effectively; however, the grid impedance fluctuations (GIFs) may cause resonance and system instability. The GIF can reduce the resonance frequency to lower than a permissible threshold, then, the resonance may happen and prevent some nonlinear loads from being fed. On the other hand, very high resonance frequencies cause capacitor of the filter being actually short circuited. Consequently, the nature of the filter changes and reduces the power quality of the network. In this paper, considering the possible range for GIFs and using Kharitonov control theorem (KCT), the coefficients of the PI controller and the current feedback of the filter capacitor are obtained simultaneously to ensure safe and desired operation of the GC-VSI against the GIFs. As a result, the proposed closed loop system shows optimal response to variation of the reference current. Genetic algorithm (GA) is used to determine optimal values of the coefficients and the gain. Simulation results carried out in MATLAB/SIMULINK show accuracy and effectiveness of the proposed method.
机译:LCL滤波器因其低成本和高效率而用于并网电压源逆变器(GC-VSI)。这些滤波器有效地衰减了高次谐波。但是,电网阻抗波动(GIF)可能会导致谐振和系统不稳定。 GIF可以将共振频率降低到低于允许的阈值,然后可能发生共振并阻止馈入一些非线性负载。另一方面,非常高的谐振频率导致滤波器的电容器实际上短路。因此,滤波器的性质会改变并降低网络的电能质量。在本文中,考虑到GIF的可能范围,并使用Kharitonov控制定理(KCT),同时获得PI控制器的系数和滤波电容器的电流反馈,以确保GC-VSI针对GIF的安全和理想操作。结果,提出的闭环系统显示出对参考电流变化的最佳响应。遗传算法(GA)用于确定系数和增益的最佳值。在MATLAB / SIMULINK中进行的仿真结果表明了该方法的准确性和有效性。

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