DocumentCode
3108234
Title
Design of a novel ZVT soft-switching chopper
Author
Yu, Huijie ; Song, Byeong-Mun ; Lai, Jason
Author_Institution
Bradley Dept. of Electr. & Comput. Eng., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
Volume
1
fYear
1999
fDate
36373
Firstpage
287
Abstract
This paper presents a simple soft-switching chopper scheme with fixed timing control. A near-zero-voltage transition (near-ZVT) switching condition can be realized with only one auxiliary resonant snubber branch added to a full-bridge two-quadrant chopper. The turn-off loss is reduced by adding lossless snubber capacitors in parallel with the main switches. The proposed design approach is to realize true ZVT at the rated load and near-ZVT under all other load current conditions. Computer simulation and hardware experiments have been implemented to verify the proposed concept, and the resulting voltage and current waveforms are shown from 30 to 150 percent load conditions in this paper. Under near-ZVT switching, the switching loss and dv/dt of can be significantly reduced, and the reverse recovery problem of main switches can be avoided as compared to the hard-switching case. The design criteria for the resonant components are described with a practical example that has been used in a commercial magnetic levitation system. Under different load current conditions, the proposed design methodology has been fully verified with simulation and experimental results
Keywords
DC-DC power convertors; bridge circuits; choppers (circuits); load (electric); resonant power convertors; snubbers; auxiliary resonant snubber branch; design criteria; fixed timing control; full-bridge two-quadrant chopper; load current conditions; lossless snubber capacitors; magnetic levitation system; reverse recovery problem; soft-switching chopper scheme; turn-off loss; zero voltage switching; Capacitors; Choppers; Computer simulation; Hardware; Resonance; Snubbers; Switches; Switching loss; Timing; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Specialists Conference, 1999. PESC 99. 30th Annual IEEE
Conference_Location
Charleston, SC
ISSN
0275-9306
Print_ISBN
0-7803-5421-4
Type
conf
DOI
10.1109/PESC.1999.789017
Filename
789017
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