Experimental Validation of PI Controller Optimization Using LPO and PSO for a DC–DC Boost Converter

This work presents the experimental validation of proportional–integral (PI) controller gains for a DC–DC boost converter obtained using two metaheuristic optimization algorithms: Particle Swarm Optimization (PSO) and Lungs Performance Optimization (LPO). The controller gains were previously determined through a simulation-based optimization procedure in which the proportional and integral gains were selected by minimizing a performance-based objective function incorporating settling time and overshoot. In the present study, the optimized gains are implemented in a physical boost converter prototype and experimentally evaluated under varying operating conditions. Their performance is compared with that of a conventional PI controller tuned using the Root Locus method. The experimental results demonstrate stable output-voltage regulation for all evaluated controllers. Under the investigated conditions, the controllers tuned using the metaheuristic approaches exhibit dynamic responses comparable to those obtained with the conventional tuning method. These results provide experimental evidence supporting the applicability of metaheuristic optimization for PI controller tuning in power electronic converters.

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Journal
Sci
Published
2026-09-09
DOI
https://doi.org/10.3390/sci8090250
Primary Topic
Advanced DC-DC Converters
Type
article
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Experimental Validation of PI Controller Optimization Using LPO and PSO for a DC–DC Boost Converter

Belem Saldivar, Victor Ramirez, David Abraham Uribe Sosa, Luis Daniel Marin Uc
Sci
Advanced DC-DC Converters
article

Experimental Validation of PI Controller Optimization Using LPO and PSO for a DC–DC Boost Converter

Belem Saldivar, Victor Ramirez, David Abraham Uribe Sosa, Luis Daniel Marin Uc
article en

Abstract

This work presents the experimental validation of proportional–integral (PI) controller gains for a DC–DC boost converter obtained using two metaheuristic optimization algorithms: Particle Swarm Optimization (PSO) and Lungs Performance Optimization (LPO). The controller gains were previously determined through a simulation-based optimization procedure in which the proportional and integral gains were selected by minimizing a performance-based objective function incorporating settling time and overshoot. In the present study, the optimized gains are implemented in a physical boost converter prototype and experimentally evaluated under varying operating conditions. Their performance is compared with that of a conventional PI controller tuned using the Root Locus method. The experimental results demonstrate stable output-voltage regulation for all evaluated controllers. Under the investigated conditions, the controllers tuned using the metaheuristic approaches exhibit dynamic responses comparable to those obtained with the conventional tuning method. These results provide experimental evidence supporting the applicability of metaheuristic optimization for PI controller tuning in power electronic converters.

SciVol. 8(9)
Secretaría de Investigación, Innovación y Educación Superior (MX), Instituto Politécnico Nacional (MX)
Affordable and clean energy
Openalex Percentile: Top 19%
Advanced DC-DC Converters
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