Title :
Analysis of a new soft switching converter with three resonant tanks
Author :
Bor-Ren Lin ; Chia-Hung Chao ; Chien, C.H. ; Wang, Y.H.
Author_Institution :
Dept. of Electr. Eng., Nat. Yunlin Univ. of Sci. & Technol., Yunlin, Taiwan
Abstract :
This paper presents a new zero-voltage switching (ZVS) DC/DC converter with three resonant tanks for high input voltage and high load current applications. Two series half-bridge legs and two split capacitors in order to limit the voltage stress of active switches at a half of input voltage. These resonant circuits are operated by an interleaved PWM scheme. The output sides of these resonant circuits are connected in parallel to evenly distribute the input power, lessen current stresses on rectifier diodes and reduce copper losses of transformers. The ZVS turn-on through power switches and zero-current switching (ZCS) turn-off for rectifier diodes are accomplished through three series resonant tanks. Therefore, switching losses of MOSFETs and reverse recovery problem of rectifier diodes are reduced. The primary windings of two transformers are series-connected to balance the secondary winding currents. Finally, experiments based on a scale-down prototype are provided to verify the performance of the proposed converter.
Keywords :
DC-DC power convertors; MOSFET; PWM power convertors; resonant power convertors; switching convertors; transformers; zero current switching; zero voltage switching; MOSFET; ZCS turn-off; ZVS dc-dc converter; active switches; copper losses reduction; half-bridge legs; high input voltage applications; high load current applications; interleaved PWM scheme; lessen stresses; power switches; rectifier diodes; reverse recovery problem; scale-down prototype; secondary winding currents; series resonant tanks; soft switching converter; split capacitors; switching losses; transformers; voltage stress; zero-current switching; zero-voltage switching; Capacitors; Magnetic resonance; RLC circuits; Rectifiers; Stress; Switching frequency; Zero voltage switching;
Conference_Titel :
Power Electronics and Drive Systems (PEDS), 2013 IEEE 10th International Conference on
Conference_Location :
Kitakyushu
Print_ISBN :
978-1-4673-1790-0
Electronic_ISBN :
2164-5256
DOI :
10.1109/PEDS.2013.6527054