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| DOI | 10.18180/TECCIENCIA.2017.22.9 | ||
| Año | 2017 | ||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
This paper presents an analytical study of an input current-mode control based on a linear matrix inequalities (LMI) for a non-inverting buck-boost converter. The LMI control technique makes better the dynamic response of this converter in comparison with previous research works, where its currents has been regulated using a classical analogue PI controller with an additional pole. The main features of the selected converter are its voltage step-up and step-down properties, high efficiency, wide bandwidth and low input and output current ripples. All of these converter's properties allows it to be used as a modular converter capable of being positioned at any converter locations in hybrid systems, which are formed by varying-voltage-sources, current controlled dc-dc converters and auxiliary storage devices such as batteries or capacitors. The designed statefeedback controller has the following aims, among others: pole placement constraints, control effort limitation, and decay rate and bandwidth improvement. The use of state-space averaging (SSA) method allows to describe LMI constraints which guarantees stability and provide good performances under a close loop pole region and control signal bound. The theoretical analysis have been simulated by means of Matlab and PSIM on an 800-W coupled-inductor buck-boost dc-dc switching converter.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Ramirez-Murillo, Harrynson | - |
Univ Antonio Narino - Colombia
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| 2 | Garzon Huertas, German | Hombre |
Univ Antonio Narino - Colombia
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| 3 | Torres-Pinzon, Carlos Andres | Hombre |
Universidad Santo Tomás - Colombia
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| 4 | Erick Navarrete-Gomez, Jhon | - |
Universidad Santo Tomás - Colombia
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| 5 | RESTREPO-PATINO, CARLOS ALBERTO | Hombre |
Universidad de Talca - Chile
|