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TITLE:

Adaptive Sliding Mode Control of a Boost Converter With Unknown Constant Power Load - imarina:9448907

URV's Author/s:El Aroudi Chaoui, Abdelali / Lopez Santos, Oswaldo / Martínez Salamero, Luis / Zambrano Prada, David Alejandro
Author, as appears in the article.:Zambrano-Prada, DA; El Aroudi, A; López-Santos, O; Vázquez-Seisdedos, L; Martí-Nez-Salamero, L
Author's mail:luis.martinez@urv.cat
luis.martinez@urv.cat
davidalejandro.zambrano@urv.cat
davidalejandro.zambrano@urv.cat
oswaldo.lopez@urv.cat
oswaldo.lopez@urv.cat
davidalejandro.zambrano@urv.cat
abdelali.elaroudi@urv.cat
abdelali.elaroudi@urv.cat
Author identifier:0000-0003-3344-9501
0000-0003-3344-9501
0000-0002-2780-5525
0000-0002-2780-5525
0000-0001-7166-0813
0000-0001-7166-0813
0000-0002-2780-5525
0000-0001-9103-7762
0000-0001-9103-7762
Journal publication year:2025-01-01
Publication Type:Journal Publications
APA:Zambrano-Prada, DA; El Aroudi, A; López-Santos, O; Vázquez-Seisdedos, L; Martí-Nez-Salamero, L (2025). Adaptive Sliding Mode Control of a Boost Converter With Unknown Constant Power Load. IEEE Access, 13(), 33714-33732. DOI: 10.1109/ACCESS.2025.3543659
Paper original source:IEEE Access. 13 33714-33732
Abstract:In this paper, output voltage regulation in a boost converter with constant power load (CPL) is carried out by means of sliding-mode control (SMC) with an estimation loop of the output power. The estimation procedure is based on the integral of an odd-symmetric function of the output voltage error, which confers an adaptive nature to the switching regulator. Rational, trigonometric, sigmoid and sign-type odd- symmetric functions are analyzed to select the best candidate for output power estimation. In addition, a two- degree polynomial surface is considered to induce the sliding motions. Subsequently, the corresponding conditions for the existence of the sliding mode and for the stability of the equilibrium point including the estimation dynamics are derived. One of the main features of this proposal is that the resulting controller can be implemented analogically, requiring operational amplifier-based circuits plus a divider. PSIM (c) and MATLAB (c) simulations show a fast recovery in response to large-signal disturbances in the load power and zero steady-state output voltage error. Experimental results obtained from a 500 W prototype are in perfect agreement with both theoretical predictions and numerical simulations.
Article's DOI:10.1109/ACCESS.2025.3543659
Link to the original source:https://ieeexplore.ieee.org/document/10892111
Paper version:info:eu-repo/semantics/publishedVersion
licence for use:https://creativecommons.org/licenses/by/3.0/es/
Department:Enginyeria Electrònica, Elèctrica i Automàtica
Licence document URL:https://repositori.urv.cat/ca/proteccio-de-dades/
Thematic Areas:Telecommunications
Materials science (miscellaneous)
Materials science (all)
General materials science
General engineering
General computer science
Engineering, electrical & electronic
Engineering (miscellaneous)
Engineering (all)
Engenharias iv
Electrical and electronic engineering
Computer science, information systems
Computer science (miscellaneous)
Computer science (all)
Administração pública e de empresas, ciências contábeis e turismo
Keywords:Sliding-mode control
Sliding-mode contro
Constant power load
Boost converter
Affordable and clean energy
Adaptive power estimation
Entity:Universitat Rovira i Virgili
Record's date:2026-05-09
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