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A PI + Sliding-Mode controller based on the discontinuous conduction mode for an unidirectional Buck–Boost converter with electric vehicle applications
Ileana González Collazo
Antonio Sánchez-Squella
Diego Langarica-Córdoba
Franco Fernando Yanine
VICTOR MANUEL RAMIREZ RIVERA
Acceso Abierto
Atribución-NoComercial-SinDerivadas
https://doi.org/10.3390/en14206785
DC/DC POWER CONVERTERS
BUCK–BOOST CONVERTER
DISCONTINUOUS CONDUCTION MODE
SLIDING-MODE CONTROL
PROPORTIONAL–INTEGRAL CONTROL
ELECTRIC VEHICLES
This paper solves the buck–boost converter operation problem in the discontinuous conduction mode and the feeding a DC bus of a combined battery/solar-powered electric vehicle grid. Since the sun’s radiation has a very important effect on the performance of photovoltaic solar modules due to its continuous variation, the main task of the system under study is the regulation of the output voltage from an MPPT system located at the output of the panels in order to obtain a DC bus voltage that is fixed to 24 V. This is ensured via a double-loop scheme, where the current inner loop relies on sliding-mode control; meanwhile, the outer voltage loop considers a proportional–integral action. Additionally, the current loop implements an adaptive hysteresis logic in order to operate at a fixed frequency. The closed-loop system’s performance is checked via numerical results with respect to step changes in the load, input voltage, and output voltage reference variations.
2021
Artículo
Energies, 14(20), 2021, 6785.
Inglés
González, I.; SánchezSquella, A.; Langarica-Cordoba, D.; Yanine-Misleh, F.; Ramirez, V. A PI + Sliding-Mode Controller Based on the Discontinuous Conduction Mode for an Unidirectional Buck–Boost Converter with Electric Vehicle Applications. Energies 2021, 14, 6785. https://doi.org/10.3390/en14206785
ENERGÍA
Versión publicada
publishedVersion - Versión publicada
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