Feed-forward decoupling control to enhance robust stability of PV inverter connected to a weak grid

Antoine Musengimana, Xuemei Zheng, Haoyu Li
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引用次数: 1

Abstract

This paper presents a feed-forward decoupling control method to enhance the stability of a photovoltaic (PV) inverter connected to a weak grid. As the grid weakens, the point of common coupling (PCC) voltage becomes sensitive to the active power. This increases the coupling effects between control loops, Phase-Locked Loop (PLL) and grid dynamics, which deteriorate system stability. Therefore, in this paper, a decoupling control method is proposed in which the reference active current obtained by regulating the DC-link voltage to its reference value is feed-forwarded to modulate the reactive current reference generated by regulating the PCC voltage to its predefined value. As result, the robust performance of the PV inverter connected to a weak grid has been yielded, where the inverter stability is maintained for both wider PLL bandwidth and high grid impedance. Based on open-loop bode plot and closed-loop eigenvalues of the DC-link voltage control (DVC) loop, a stability analysis of the proposed control method and the conventional vector control method has been performed. Then, the proposed method is verified through simulation results obtained by PLECS.
增强弱电网光伏逆变器鲁棒稳定性的前馈解耦控制
提出了一种前馈解耦控制方法,以提高光伏逆变器接入弱电网的稳定性。随着电网的减弱,共耦合点电压对有功功率变得敏感。这增加了控制环、锁相环(PLL)和电网动力学之间的耦合效应,降低了系统的稳定性。因此,本文提出了一种解耦控制方法,将直流电压调节到参考值得到的参考有功电流前馈调制PCC电压调节到预定值产生的参考无功电流。因此,连接到弱电网的PV逆变器的鲁棒性能已经产生,其中逆变器的稳定性在更宽的锁相环带宽和高电网阻抗下都保持不变。基于直流电压控制(DVC)回路的开环波德图和闭环特征值,对该控制方法和传统矢量控制方法进行了稳定性分析。然后,通过PLECS的仿真结果验证了所提出的方法。
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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