Disturbance Observer-Based Finite-Time Control for Three-Phase AC-DC Converter

For three-phase ac-dc converters, load disturbances, and parameter uncertainties cause large fluctuations of the dc-link voltage, even resulting in system instability. In order to cope with this problem, the disturbance observer-based finite-time control (DOFTC) is put forward in this article, where...

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Veröffentlicht in:IEEE transactions on industrial electronics (1982) 2022-06, Vol.69 (6), p.5637-5647
Hauptverfasser: Fu, Cheng, Zhang, Chenghui, Zhang, Guanguan, Song, Jinqiu, Zhang, Chen, Duan, Bin
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Sprache:eng
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Zusammenfassung:For three-phase ac-dc converters, load disturbances, and parameter uncertainties cause large fluctuations of the dc-link voltage, even resulting in system instability. In order to cope with this problem, the disturbance observer-based finite-time control (DOFTC) is put forward in this article, where the finite-time disturbance observer is designed to fast and accurately estimate disturbances. Subsequently, the stability of the ac-dc converter closed-loop system is analyzed and theoretically proved. Finally, experimental results verify the effectiveness of the DOFTC strategy, where good dynamic and steady-state performance is achieved under load disturbance and parameter uncertainties. Compared with the enhanced state observer-based sliding mode control and adaptive control method, the proposed DOFTC method not only reduced the fluctuations of the dc-link voltage by at least 55% but also improved the transient response.
ISSN:0278-0046
1557-9948
DOI:10.1109/TIE.2021.3088358