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Robust L Approximation of an LCL Filter Type Grid-Connected Inverter Using Active Disturbance Rejection Control under Grid Impedance Uncertainty

机译:在电网阻抗不确定度下,基于主动抗扰控制的LCL滤波器型并网逆变器的鲁棒L近似

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摘要

High-order filters, such as LCL, are more commonly employed in grid-connected inverters (GcIs) as an interference element for the better attenuation of switching harmonics. However, LCL filters may have resonance poles and antiresonance zeros in the frequency response with inverter side current. This may affect the stability of the system and limit the control bandwidth with the simple single-loop PI control. This becomes severe with the introduction of grid impedance due to the large distance between renewable energy sources and the power grid. To mitigate this effect, active damping and sensorless damping is preferred with pre-information about grid impedance. In this paper, linear active disturbance rejection control (ADRC) is introduced, first to L filter type GcI and later extended to LCL filter type GcIs with minimum modification. From the frequency analysis, it is shown that the characteristics of the proposed control scheme remain the same even with a change in filter order and grid impedance. The resonance poles and antiresonance zeros in the LCL filter are compensated via the pole-zero cancelation technique. In addition to this, the preserve bandwidth, simple control design, and decoupled current control are also achieved with the proposed method. The robustness of the proposed method is compared with the single-loop PI control under different filter types and grid impedance uncertainty through MATLAB simulation and experimental outcomes.
机译:高阶滤波器(如LCL)更常用于并网逆变器(GcI)作为干扰元件,以更好地衰减开关谐波。然而,LCL滤波器在与逆变器侧电流的频率响应中可能具有谐振极点和反谐振零点。这可能会影响系统的稳定性,并限制简单的单回路PI控制的控制带宽。由于可再生能源与电网之间的距离较远,随着电网阻抗的引入,这种情况变得严重。为了减轻这种影响,主动阻尼和无传感器阻尼是首选,并提供有关电网阻抗的预信息。本文介绍了线性主动抗扰控制(ADRC),首先引入L型GcI滤波器,然后扩展到LCL滤波器型GcI。从频率分析中可以看出,即使滤波阶数和栅极阻抗发生变化,所提控制方案的特性仍然保持不变。LCL滤波器中的谐振极点和反谐振零点通过极点抵消技术进行补偿。除此之外,该方法还实现了保持带宽、简单控制设计和去耦电流控制等优点。通过MATLAB仿真和实验结果,比较了所提方法在不同滤波器类型和网格阻抗不确定度下的单回路PI控制的鲁棒性。

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