DocumentCode :
868327
Title :
A zero voltage transition boost converter employing a soft switching auxiliary circuit with reduced conduction losses
Author :
Jain, Nikhil ; Jain, Praveen K. ; Joós, Géza
Author_Institution :
Essen Deinki, Chandigarh, India
Volume :
19
Issue :
1
fYear :
2004
Firstpage :
130
Lastpage :
139
Abstract :
This paper presents a zero-voltage-transition (ZVT) boost converter using a soft switching auxiliary circuit for power factor correction (PFC) applications. The improvement over existing topologies lies in the positioning of the auxiliary circuit capacitors and the subsequent reduction in the resonant current and therefore the conduction losses as compared to other similar topologies. The proposed converter operates in two modes - Mode 1 and Mode 2. It is shown in the paper that the converter should be designed using the constraints obtained in Mode 1 to achieve low-loss switching. The converter is analyzed and characteristic curves presented which are then used in a detailed design example. Experimental results from a 250 W, 127 V input laboratory prototype switching at 100 kHz verify the design process and highlight the advantages of the proposed topology. The proposed converter is suitable for single-phase, two stage power factor correction circuits with universal input voltage range and power levels up to 3 kW.
Keywords :
AC-DC power convertors; PWM power convertors; losses; network topology; power factor correction; resonant power convertors; switching convertors; 100 kHz; 127 V; 250 W; AC-DC converters; ZVT PWM boost converter; conduction loss reduction; laboratory prototype switching; power factor correction circuit; rectifier; resonant current; resonant switching; soft switching auxiliary circuit capacitor; universal input voltage range; zero voltage transition boost converter; Circuit topology; Laboratories; Power factor correction; Prototypes; RLC circuits; Resonance; Switched capacitor circuits; Switching circuits; Switching converters; Zero voltage switching;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2003.820549
Filename :
1262061
Link To Document :
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