DocumentCode :
2028941
Title :
Volume optimization of a PFC flyback structure under electromagnetic compatibility, loss and temperature constraints
Author :
Larouci, C. ; Ferrieux, J.P. ; Gerbaud, L. ; Roudet, J. ; Keradec, J.P.
Author_Institution :
Lab. d´´Electrotechnique de Grenoble, France
Volume :
3
fYear :
2002
fDate :
2002
Firstpage :
1120
Abstract :
The aim of this paper is to present an analytical optimization approach of a flyback structure in PFC mode. Indeed, softwares like Saber, Pspice or Simplorer are effective means for the power electronics structure time-domain studies. However, if these structures have an AC input and a high switching frequency (various time scales), time-domain simulation becomes painful and expensive in memory and computing time. The study of EMC performances is also difficult because of the line impedance stabilizer network (LISN) time-constants which comes to penalize the time-domain simulation. In addition, in sizing and optimization process, results in short computing times are needed, so the time-domain simulation may be too time consuming. In this way, the paper proposes to carry out a compromise between the model accuracy and the tool rapidness and recommends the use of analytical models to optimize the passive element volume of a flyback structure by respecting EMC standards, by minimizing the whole losses dissipated in the structure (conduction and switching semiconductor losses, core and copper losses in the transformer) and by constraining the semiconductor junction, the winding and the magnetic circuit temperatures. Firstly, analytical models of the flyback structure for these various optimization aspects are developed, validated by numerical simulation or measures and integrated in an optimization process. Then, the optimization results are presented and validated thanks to a measurement workbench of the flyback structure.
Keywords :
AC-DC power convertors; circuit optimisation; circuit simulation; losses; power engineering computing; power factor correction; power transformers; rectifying circuits; thermal analysis; transformer cores; transformer windings; EMC performances; EMC standards; analytical optimization approach; computer simulation; conduction losses; flyback structure power factor corrector; line impedance stabilizer network time-constants; magnetic circuit; numerical simulation; semiconductor junction; switching semiconductor losses; temperature constraints; transformer copper losses; transformer core losses; volume optimization process; winding; Analytical models; Computational modeling; Constraint optimization; Electromagnetic compatibility; Integrated circuit measurements; Magnetic losses; Power electronics; Switching frequency; Temperature; Time domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Specialists Conference, 2002. pesc 02. 2002 IEEE 33rd Annual
Print_ISBN :
0-7803-7262-X
Type :
conf
DOI :
10.1109/PSEC.2002.1022325
Filename :
1022325
Link To Document :
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