Fractional order harmonic disturbance observer control for three-phase LCL-type inverter



Lai, Jinmu, Yin, Xin, Yin, Xianggen and Jiang, Lin ORCID: 0000-0001-6531-2791
(2021) Fractional order harmonic disturbance observer control for three-phase LCL-type inverter CONTROL ENGINEERING PRACTICE, 107. 104697-. ISSN 0967-0661, 1873-6939

[thumbnail of Fractional order harmonic disturbance observer control.pdf] Text
Fractional order harmonic disturbance observer control.pdf - Author Accepted Manuscript

Download (5MB) | Preview

Abstract

The quality of output current of LCL-type voltage source inverter (VSI) is degraded by the grid voltage distortion, the dead time effect, and the parameter mismatches. This paper proposes a novel fractional order harmonic disturbance observer-based control (FOHDO) for the three-phase LCL-type inverter to suppress all the dc- and ac-component periodic disturbances. Firstly, a harmonic disturbance observer based control for LCL-type inverter is proposed with the internal model knowledge of the periodic disturbances signals. Subsequently, the FOHDO based on Lagrange interpolating polynomial fractional order delay approximation is put forward to enhance the adaptability of the grid frequency. Then, the stability and robustness performance of the proposed FOHDO for LCL-type inverter are evaluated, which also involves a detailed parameter design process. Finally, the effectiveness and performance of the proposed FOHDO method are verified by both experimental and simulation results.

Item Type: Article
Uncontrolled Keywords: LCL-type three-phase inverter, Periodic disturbances, Frequency deviation, Fractional order harmonic disturbance observer
Depositing User: Symplectic Admin
Date Deposited: 10 Dec 2020 16:16
Last Modified: 16 Jun 2026 13:48
DOI: 10.1016/j.conengprac.2020.104697
Related Websites:
URI: https://livrepository.liverpool.ac.uk/id/eprint/3109877
Disclaimer: The University of Liverpool is not responsible for content contained on other websites from links within repository metadata. Please contact us if you notice anything that appears incorrect or inappropriate.