Enhanced Robust Control of a DC-DC Converter for Fuel Cell Application Based on High-Order Extended State Observer

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TitreEnhanced Robust Control of a DC-DC Converter for Fuel Cell Application Based on High-Order Extended State Observer
Type de publicationJournal Article
Year of Publication2020
AuteursZhuo S, Gaillard A, Xu L, Bai H, Paire D, Gao F
JournalIEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION
Volume6
Pagination278-287
Date PublishedMAR
Type of ArticleArticle
ISSN2332-7782
Mots-clésDC-DC converter, extended state observer (ESO), floating interleaved boost converter (FIBC), fuel cell (FC) application, robust control
Résumé

In this article, to better deal with the unknown time-varying disturbance, an enhanced robust controller based on high-order extended state observer (ESO) is proposed for a dc-dc floating interleaved boost converter in fuel cell application. Within the proposed controller, the disturbance is estimated in real time using high-order ESO and then canceled in the control law. Theoretical analysis is carried out to evaluate the controller performance of different order ESO. It is shown that compared with that of the conventional ESO-based controller, the antidisturbance ability of the proposed controller with high-order ESO is enhanced significantly. The proposed controller does not require extra sensors. The effectiveness of the proposed controller is demonstrated by both simulation and experimental results.

DOI10.1109/TTE.2020.2974582