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Active damping of LLCL-filter resonance based on LC-trap voltage and capacitor current feedback

机译:基于LC陷阱电压和电容器电流反馈的LLCL滤波器谐振的有源阻尼

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摘要

The LLCL-filter is emerging into grid-connected converters due to a smaller size compared to the conventional the LCL-filter. Similar to LCL-filter, the high order resonance introduces potential instability to the overall system which should be properly damped either passively or actively. In this paper, different feedback coefficients like the proportional, derivative, integral, high pass and low pass feedback coefficients of the filter capacitor current and the LC-trap circuit voltage are investigated for damping the filter resonance. Active damping methods are analyzed by using the concept of the equivalent impedance with and without the delay effect of an LLCL-filter based grid-connected inverter. Their corresponding equivalent circuits for the purpose of resonance damping are given to identify whether the feedback coefficient should be negative or positive for the different state-feedback methods. Then the stability of the different methods and the design of the feedback coefficient are analyzed and compared using root loci. Finally, experimental results are presented to validate the theoretical analysis.
机译:由于与传统的LCL滤波器相比,LLCL滤波器的尺寸更小,因此已成为并网转换器。与LCL滤波器类似,高阶谐振会给整个系统带来潜在的不稳定性,应通过被动或主动方式适当阻尼。本文研究了不同的反馈系数,例如滤波电容器电流和LC陷波电路电压的比例,微分,积分,高通和低通反馈系数,以衰减滤波器谐振。通过使用等效阻抗的概念来分析有源阻尼方法,该等效阻抗在有和没有基于LLCL滤波器的并网逆变器的延迟影响下进行。为了共振阻尼的目的,给出了它们相应的等效电路,以识别对于不同的状态反馈方法,反馈系数应为负还是正。然后使用根基因座分析和比较了不同方法的稳定性和反馈系数的设计。最后,给出实验结果以验证理论分析。

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