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Circulating resonant current suppression for current-controlled inverters based on output impedance shaping

机译:基于输出阻抗整形的电流控制逆变器的循环谐振电流抑制

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Current-controlled LCL-filtered inverters are usually paralleled together for interconnecting the renewable energy resources into the grid. When the inverter output impedance is not well designed, the harmonic circulating currents out of the control bandwidth may be easily aroused. To reveal this resonant phenomenon and to enhance the stability of the parallel system, this paper builds the parallel system model with the consideration of the asynchronous carrier wave. Aiming at optimizing the inverter output impedance around the resonant frequency, a simple control method, which cascades the classical active damping loop with a proportional resonant controller with phase compensation, is proposed for the parallel inverter system. Each inverter is carefully designed with a minimum phase behavior by tuning the control parameters. Both the high modulus and the passivity of the output impedance are guaranteed to mitigate the circulating resonant currents. The effectiveness of the proposed control method is experimentally validated by a three-parallel inverter system.
机译:电流控制的经过LCL滤波的逆变器通常并联在一起,以将可再生能源互连到电网中。如果逆变器的输出阻抗设计不当,则很容易引起超出控制带宽的谐波循环电流。为了揭示这种谐振现象并增强并联系统的稳定性,本文考虑了异步载波的情况建立了并联系统模型。为了优化谐振频率附近的逆变器输出阻抗,针对并联逆变器系统,提出了一种简单的控制方法,该方法将经典的有源阻尼环路与具有相位补偿的比例谐振控制器进行级联。通过调整控制参数,精心设计了每个逆变器,使其具有最小的相位特性。高模量和输出阻抗的无源性都可以保证减轻循环谐振电流。三并联逆变器系统通过实验验证了所提出的控制方法的有效性。

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