Feedback linearization control of photovoltaic inverter with LCL filter

Xianwen Bao, F. Zhuo, Baoquan Liu
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引用次数: 7

Abstract

This paper presents a method to design a control system for grid-connected Photovoltaic (PV) inverter which has a LCL-type filter to suppress the output current total harmonic distortion (THD). The conventional approach to design the control system is in synchronous reference domain, which transforms the ac variables into dc quantities and thus, possibility of applying the simple PI controller. However, in a LCL-type filter, the coupling terms are complicated due to the filter capacitance and inductance, and have not been formulated so far. It has been found that the major limitations of real and reactive power are the coupling terms. In this paper, the PV inverter adopts conventional double loops control strategy, inner inductance current control loop and outer DC link voltage control loop. An accurate linear model of three phase PV inverter is derived using feedback linearization method. The linearization system has successfully decoupled the real and reactive current loops and achieves desirable performance. A 250-kW three phase full bridge grid-connected inverter is presented to confirm the analytical results. Simulation results, using MATLAB/SIMULINK, presented for this strategy confirm the effectiveness of the control scheme.
基于LCL滤波的光伏逆变器反馈线性化控制
本文提出了一种光伏并网逆变器控制系统的设计方法,该控制系统采用lcl型滤波器来抑制输出电流的总谐波失真。传统的控制系统设计方法是在同步参考域,将交流变量转换为直流量,从而可以应用简单的PI控制器。然而,在lc型滤波器中,由于滤波器电容和电感的关系,耦合项比较复杂,目前还没有明确的公式。研究发现,实功率和无功功率的主要限制是耦合项。在本文中,光伏逆变器采用传统的双环控制策略,即内电感电流控制环和外直流环节电压控制环。采用反馈线性化方法,建立了三相光伏逆变器的精确线性模型。线性化系统成功地解耦了实电流回路和无功电流回路,并取得了理想的性能。以250kw三相全桥并网逆变器为例验证了分析结果。利用MATLAB/SIMULINK对该策略进行了仿真,验证了控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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