A hybrid controller for PWM active rectifiers based LCL filters
ISSN: 0332-1649
Article publication date: 6 July 2015
Issue publication date: 6 July 2015
Abstract
Purpose
The purpose of this paper is to propose a new hybrid control method of pulse width modulation (PWM) active rectifiers tied to the grid through an LCL filter. The control method is designed with the aim to achieve a perfect regulation of the dc-bus voltage; a near unity input power factor (UIPF) operation as well as a high quality of the line currents.
Design/methodology/approach
The proposed hybrid control method consists of a PI-based linear controller cascaded with a nonlinear one. The nonlinear controller (inner loop) is designed using the input-output feedback linearization (IOFL) theory. It should control both the dc-bus voltage and the input currents at the converter’s poles. The linear controller (outer loop) is devoted to control the reactive line current so as to achieve a near UIPF.
Findings
A perfect regulation of the dc-bus voltage and a near UIPF operation are achieved. Moreover, a high quality of the line currents is obtained. The robustness and effectiveness of the proposed control method have been successfully tested under variation of the dc voltage reference as well as grid and load disturbances.
Practical implications
The proposed method is useful for single-stage and two-stage grid connected photovoltaic systems, wind energy conversion, and distributed power generation systems.
Originality/value
The main novelty of this paper is the combination of linear and nonlinear controllers with the aim to control a PWM active rectifier tied to the grid through a third-order LCL filter. In the opinion, such control method has not been applied to this converter in earlier research papers. The numerical simulations carried out under normal and abnormal conditions confirm the effectiveness of the proposed approach.
Keywords
Citation
Marzouki, A., Hamouda, M. and Fnaiech, F. (2015), "A hybrid controller for PWM active rectifiers based LCL filters", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 34 No. 4, pp. 1229-1251. https://doi.org/10.1108/COMPEL-06-2014-0140
Publisher
:Emerald Group Publishing Limited
Copyright © 2015, Emerald Group Publishing Limited