DocumentCode :
255484
Title :
Half-cycle sampled discrete model of series-parallel resonant converter with optimized modulation
Author :
Junbing Tao ; Zhiyu Cao ; Frohleke, Norbert ; Bocker, Joachim
Author_Institution :
Univ. of Paderborn, Paderborn, Germany
fYear :
2014
fDate :
26-28 Aug. 2014
Firstpage :
1
Lastpage :
9
Abstract :
Because of low switching losses and wide operation range, series-parallel resonant converter with optimized modulation is attractive. There are three major modeling methods for resonant converters, including approximation method, extended describing function method, and sampled-data method. Approximation method and extended describing function method are simple but relatively inaccurate on heavy load conditions. Sampled-data method requires many computation resources which limits the utilization in control algorithm. A low computational cost and relatively accurate model, half-cycle sampled discrete model is proposed in this contribution. The model describes the behavior of converters with slow-varying variable and assumes variables constant in every half cycle. The model is verified by circuit simulation and experiments.
Keywords :
approximation theory; circuit simulation; resonant power convertors; sampled data circuits; approximation method; circuit simulation; computation resources; computational cost; control algorithm; function method; half-cycle sampled discrete model; heavy load conditions; optimized modulation; sampled data method; series-parallel resonant converter; slow-varying variable; Capacitors; Computational modeling; Equations; Integrated circuit modeling; Load modeling; Mathematical model; Modulation; Modelling; Resonant converter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Applications (EPE'14-ECCE Europe), 2014 16th European Conference on
Conference_Location :
Lappeenranta
Type :
conf
DOI :
10.1109/EPE.2014.6910772
Filename :
6910772
Link To Document :
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