Design of Robust Feedback Control Together with Anti-Windup Compensator in Natural Frame for Three-Phase Grid-Tied Inverters with LCL Filter

Mahdi Debouza, R. Errouissi, H. Shareef, Mohammed Al Razehi
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Abstract

The design and experimental validation of a robust feedback controller for three-phase grid-tied inverters using LCL filter are presented in this paper. The proposed controller is developed in the natural reference frame to deal with normal and abnormal grid voltage conditions. The objective of the proposed controller is to achieve the goals of stabilization, accurate tracking of sinusoidal references, and asymptotic disturbance rejection. These goals are fulfilled by considering an existing dynamic/stabilizing compensator, which was proposed for a class of perturbed linear systems with sinusoidal disturbances. This compensator guarantees accurate sinusoidal reference tracking under fixed-frequency sinusoidal disturbances. However, during the saturation of control input, the transient response can be deteriorated due to the resonant build-up and can even destroy the closed-loop stability. To overcome this issue, the dynamic compensator is modified, in this paper, to incorporate an anti-windup scheme, where the gain is determined using absolute stability tools including the circle criterion. The proposed controller demonstrated a strong ability to ensure exact tracking of the sinusoidal current reference and reject sinusoidal disturbances with a good transient response even when the momentarily controller saturates.
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带LCL滤波器的三相并网逆变器自然框架鲁棒反馈控制及抗绕组补偿器设计
本文介绍了一种基于LCL滤波器的三相并网逆变器鲁棒反馈控制器的设计和实验验证。该控制器是在自然参考系中开发的,用于处理正常和异常的电网电压情况。所提出的控制器的目标是达到稳定、精确跟踪正弦参考和渐近抑制干扰的目标。针对一类具有正弦扰动的摄动线性系统,采用已有的动态/稳定补偿器实现了上述目标。该补偿器保证了在固定频率正弦干扰下精确的正弦参考跟踪。然而,在控制输入饱和时,由于谐振的积累,瞬态响应会恶化,甚至会破坏闭环的稳定性。为了克服这个问题,本文对动态补偿器进行了改进,加入了一种抗绕组方案,其中增益是使用包括圆准则在内的绝对稳定性工具确定的。所提出的控制器显示出强大的能力,以确保精确跟踪正弦电流参考和抑制正弦干扰,即使在暂时控制器饱和时也具有良好的瞬态响应。
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