Title :
A modified forward converter with a capacitive output filter for isolated LED lighting applications
Author :
Kim, Myungbok ; Im, Daeyoung
Author_Institution :
Automotive Components R&D Group, Korea Inst. of Ind. Technol., Gwangju, South Korea
Abstract :
In order to increase the power conversion efficiency and improve the power factor, a modified forward converter is proposed, which adopts a capacitive output filter instead of the inductive output filter of the conventional forward converter. Therefore, the proposed converter has wide input voltage range in opposite to that of the conventional forward converters. Moreover, the proposed converter uses the critical conduction mode for automatic current shaping to improve the power factor. As a result, the proposed converter can achieve quasi-resonant zero-voltage-switching, which can minimize the switching loss of main MOSFET. In addition, the operational principle of the proposed converter is analyzed and the characteristic of the proposed converter is investigated in this paper. To validate the effectiveness of the proposed converter, a prototype of 25W is implemented and the experimental results are discussed in more detail.
Keywords :
filters; light emitting diodes; lighting; power MOSFET; power convertors; power factor; zero voltage switching; MOSFET; automatic current shaping; capacitive output filter; inductive output filter; isolated LED lighting applications; modified forward converter; power 25 W; power conversion efficiency; power factor; quasi-resonant zero-voltage-switching; Automotive engineering; Rectifiers; AC-DC Isolated Converter; LED Lighting; Quasi-Resonant ZVS;
Conference_Titel :
Telecommunications Energy Conference (INTELEC), 2011 IEEE 33rd International
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4577-1249-4
Electronic_ISBN :
2158-5210
DOI :
10.1109/INTLEC.2011.6099824