DocumentCode :
665855
Title :
High efficiency and high power factor single-stage balanced forward-flyback converter
Author :
Yoon Choi ; Moon-Hwan Keum ; Sang-Kyoo Han ; Jeong-Il Kang
Author_Institution :
Power Electron. Syst. Lab., Kookmin Univ., Seoul, South Korea
fYear :
2013
fDate :
10-13 Nov. 2013
Firstpage :
822
Lastpage :
827
Abstract :
In this paper, a high efficiency and high power factor single-stage balanced forward-flyback converter merging a foward and flyback converter topologies is proposed. The conventional AC/DC flyback converter can achieve a good power factor but it has a high offset current through the transformer magnetizing inductor, which results in a large core loss and low power conversion efficiency. And, the conventional forward converter can achieve the good power conversion efficiency with the aid of the low core loss but the input current dead zone near zero cross AC input voltage deteriorates the power factor. On the other hand, since the proposed converter can operate as the forward and flyback converters during switch on and off periods, respectively, it cannot only perform the power transfer during an entire switching period but also achieve the high power factor due to the flyback operation. Moreover, since the current balanced capacitor can minimize the offset current through the transformer magnetizing inductor regardless of the AC input voltage, the core loss and volume of the transformer can be minimized. Therefore, the proposed converter features a high efficiency and high power factor. To confirm the validity of the proposed converter, theoretical analysis and experimental results from a prototype of 24W LED driver are presented.
Keywords :
AC-DC power convertors; inductors; power factor; transformers; AC input voltage; AC-DC flyback converter; LED driver; core loss; current balanced capacitor; flyback converter topologies; flyback operation; foward converter topologies; high efficiency single-stage balanced forward-flyback converter; high power factor single-stage balanced forward-flyback converter; input current dead zone; power 24 W; power conversion efficiency; power transfer; switching period; theoretical analysis; transformer magnetizing inductor; Capacitors; Inductors; Light emitting diodes; Magnetic cores; Reactive power; Stress; Switches; LED driver; forward-flyback; single stage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE
Conference_Location :
Vienna
ISSN :
1553-572X
Type :
conf
DOI :
10.1109/IECON.2013.6699240
Filename :
6699240
Link To Document :
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