Title :
Sliding-mode control of quantum series-parallel resonant converters via input-output linearization
Author :
Castilla, M. ; Garcia de Vicuna, L. ; Guerrero, J.M. ; Matas, J. ; Miret, J.
Author_Institution :
Dept. de Ingenieria Electron., Univ. Politecnica de Cataluna, Vilanova I La Geltru, Spain
fDate :
4/1/2005 12:00:00 AM
Abstract :
The purpose of this paper is to explore the problem of designing proper sliding-mode controllers to regulate the output voltage of the dc-to-dc quantum series-parallel resonant converter. A control-oriented dynamic model, which appropriately describes the large-signal behavior of the power circuit by average state variables, is first developed. Using input-output feedback linearization, a control design methodology is then presented, which leads to a family of sliding surfaces that make the output voltage behave following a particular large-signal linear dynamics. Among these surfaces, the final configuration is selected taking into account control circuit simplicity as the basic premise. Besides exhibiting the absence of output-voltage errors in steady state, the control solution leads to robust operation with respect to parameter variations and external disturbances. Simulations and experimental results are reported to validate the expected features of the proposed control solution.
Keywords :
DC-DC power convertors; feedback; resonant power convertors; robust control; variable structure systems; voltage control; DC-DC converter; average state variables; control-oriented dynamic model; feedback linearization; input-output linearization; large-signal behavior; output voltage regulation; output-voltage error; parameter variation; power circuit; quantum series-parallel resonant converter; robust operation; sliding-mode control; Control design; DC-DC power converters; Error correction; Output feedback; Resonance; Robust control; Sliding mode control; Steady-state; Voltage control; Feedback linearization; quantum modulation; resonant converter; sliding-mode control;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2005.844256