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A Self-Tuning Notch Filter based Hybrid Active Damper for LCL-Type Grid-Tied Inverters with Adaptability to Weak Grids

机译:基于自调谐的Notch滤波器,用于LCL型网格栓逆变器的混合动量阻尼器,适应弱网格

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$LCL-$ filters are widely used in grid-tied converters for improved attenuations and lower costs. To prevent instability, the $LCL$ resonance peak needs to be damped by the active dampers that avoid the dissipations but increase the control complexity. In the weak grid, the harmonic currents and the grid impedance variations make the control become more complicated and difficult. The influence of the harmonic currents and the grid impedance in parallel system is researched in this paper. Then, a self-tuning notch filter (STNF)is introduced, and the resonance peak identification process implemented in digital controller is proposed in detailed. The consumption and tracking error of the STNF are analyzed guaranteeing an effective design. By adopting the STNF, the local maximum gain frequency is estimated online in response to the grid inductance variations. The construction as well as optimal design principles of the hybrid active damper are proposed in detail. To further reject the harmonic voltage effects, a PR regulator with a harmonic compensation controller is adopted. A step-by-step example design of the controller is illustrated in detail. The online implementation in DSP controllers and the digitization influence of the proposed method are also amply discussed. Finally, simulation and experimental results verify the effectiveness of the proposed method.
机译: $ lcl - $ 过滤器广泛用于网格连接转换器,可提高衰减和降低成本。防止不稳定, $ lcl $ 需要由避免耗散但增加控制复杂性的有源阻尼器抑制的共振峰值。在弱网格中,谐波电流和电网阻抗变化使得控制变得更加复杂和困难。本文研究了谐波电流和栅格阻抗的影响。然后,引入了自调谐陷波滤波器(STNF),并在数字控制器中提出了在数字控制器中实现的谐振峰识别过程。分析了STNF的消耗和跟踪误差,保证了有效的设计。通过采用STNF,响应于电网电感变化在线估计局部最大增益频率。详细提出了杂交活性阻尼器的结构以及最佳设计原理。为了进一步拒绝谐波电压效应,采用具有谐波补偿控制器的PR调节器。详细示出了控制器的逐步示例设计。讨论了DSP控制器中的在线实现以及所提出的方法的数字化影响。最后,仿真和实验结果验证了该方法的有效性。

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