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Optimized Controller Design for $LCL$-Type Grid-Connected Inverter to Achieve High Robustness Against Grid-Impedance Variation

机译:针对 $ LCL $ 型并网逆变器的优化控制器设计,以实现针对电网阻抗变化的高鲁棒性

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Capacitor-current-feedback active damping is an effective method to suppress the -filter resonance in grid-connected inverters. However, due to the variation of grid impedance, the -filter resonance frequency will vary in a wide range, which challenges the design of the capacitor-current-feedback coefficient. Moreover, if the resonance frequency is equal to one-sixth of the sampling frequency , the digitally controlled -type grid-connected inverter can be hardly stable no matter how much the capacitor-current-feedback coefficient is. In this paper, the optimal design of the capacitor-current-feedback coefficient is presented to deal with the wide-range variation of grid impedance. First, the gain margin requirements for system stability are derived under various resonance frequencies. By evaluating the effect of grid impedance on gain margins, an optimal capacitor-current-feedback coefficient is obtained. With this feedback coefficient, stable operations will be retained for all resonance frequencies except . Second, in order to improve system stability for a resonance frequency of , a phase-lag compensation for the loop gain is proposed. Finally, a 6-kW prototype is tested to verify the proposed design procedure.
机译:电容器电流反馈有源阻尼是一种抑制并网逆变器中滤波器谐振的有效方法。然而,由于电网阻抗的变化,-滤波器的谐振频率将在很宽的范围内变化,这对电容器电流反馈系数的设计提出了挑战。此外,如果谐振频率等于采样频率的六分之一,则无论电容器电流反馈系数为多少,该数字控制型并网逆变器都很难稳定。针对电网阻抗的大范围变化,提出了电容器电流反馈系数的优化设计。首先,在各种谐振频率下得出系统稳定性的增益裕量要求。通过评估电网阻抗对增益裕量的影响,可以获得最佳的电容器电流反馈系数。有了这个反馈系数,除以外的所有谐振频率都将保持稳定的工作。其次,为了提高谐振频率的系统稳定性,提出了环路增益的相位滞后补偿。最后,测试了6千瓦的原型,以验证建议的设计程序。

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