LAPSE:2023.24427
Published Article
LAPSE:2023.24427
Direct Form Digital Robust RST Control Based on Chebyshev Sphere Optimization Applied in a DC-DC Power Converter
March 28, 2023
Abstract
This paper presents a novel direct form to design a digital robust control using RST structure (i.e., name given because of the R, S and T polynomials computed) based on convex optimization such as Chebyshev sphere; this approach was applied to a DC-DC Buck converter. This methodology takes into account parametric uncertainties and a Chebyshev sphere constraint in order to ensure robust performance and stability of the system in the discrete domain. For this purpose, a mathematical model for the DC-DC Buck converter is presented when considering uncertainties in electrical variables, such as load resistance, inductance, capacitance, and source voltage variation, also to obtain the discrete model of the system by using the bilinear transformation. The proposed methodology is compared with two other approaches designed in a discrete domain: the classical pole placement and the robust methodology based on the Kharitonov theorem. Wide-ranging experiments are performed in order to evaluate the behavior of the control methodologies when the system is subject to parametric variations of the load resistance and voltage setpoint variation. The results show that the proposed methodology outperforms the other approaches in 90% of the tests and ensures robust stability and robust performance when the system is subjected to a parametric uncertainties family.
Keywords
Chebyshev sphere constraint, DC-DC power converter, digital robust RST controller, parametric uncertainties
Suggested Citation
C. das Neves C, B. Junior W, Medeiros RLPD, Ayres Junior FAC, V. Bessa I, Bessa IV, de M. Veroneze G, E. S. e Silva L, J. S. Farias N. Direct Form Digital Robust RST Control Based on Chebyshev Sphere Optimization Applied in a DC-DC Power Converter. (2023). LAPSE:2023.24427
Author Affiliations
C. das Neves C: Institute of Technology, Faculty of Electrical Engineering, Federal University of Pará—UFPA, Pará, Belém City 66075-110, Brazil [ORCID]
B. Junior W: Institute of Technology, Faculty of Electrical Engineering, Federal University of Pará—UFPA, Pará, Belém City 66075-110, Brazil [ORCID]
Medeiros RLPD: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
Ayres Junior FAC: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
V. Bessa I: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
Bessa IV: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
de M. Veroneze G: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
E. S. e Silva L: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil [ORCID]
J. S. Farias N: Faculty of Technology, Department of Electricity, Federal University of Amazonas—UFAM, Manaus City 69067-005, Amazonas, Brazil
Journal Name
Energies
Volume
13
Issue
15
Article Number
E3810
Year
2020
Publication Date
2020-07-24
ISSN
1996-1073
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PII: en13153810, Publication Type: Journal Article
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LAPSE:2023.24427
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https://doi.org/10.3390/en13153810
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