DocumentCode
400160
Title
Boost chopper-fed ZVS-PWM DC-DC converter with parasitic oscillation surge suppression-based auxiliary edge resonant snubber
Author
Ogura, Koki ; Chandhaket, Srawouth ; Ahmed, Tarek ; Nakaoka, Mutsuo
Author_Institution
Dept. of Electr. Syst. Eng., Yamaguchi Univ., Japan
fYear
2003
fDate
23-23 Oct. 2003
Firstpage
20
Lastpage
26
Abstract
This paper presents a high-frequency boost type ZVS-PWM chopper-fed DC-DC power converter with a single active auxiliary edge-resonant snubber in load stage, which can be designed for power conditioners such as solar photovoltaic generation, fuel cell generation, battery and super capacitor energy storages. Its principle operation in steady state is described in addition to a prototype setup. The experimental results of boost type ZVS-PWM chopper proposed here, are evaluated and verified with a practical design model in terms of its switching voltage and current waveforms, the switching v-i trajectory and the temperature performance of IGBT module, the actual power conversion efficiency, and the EMI of radiated and conducted emissions. And then discussed and compared with the hard switching scheme from an experimental point of view. Finally, this paper proposes a practical method to suppress parasitic oscillation due to the active auxiliary resonant switch at ZCS turn-off mode transition with the aid of an additional lossless clamping diode loop, and reduced the EMI conducted emission in this paper.
Keywords
DC-DC power convertors; PWM power convertors; choppers (circuits); oscillations; snubbers; surge protection; switching convertors; EMI conducted emission; IGBT module; auxiliary edge resonant snubber; boost chopper-fed ZVS-PWM DC-DC converter; current waveforms; hard switching scheme; lossless clamping diode loop; parasitic oscillation surge suppression; power conversion efficiency; switching v-i trajectory; switching voltage; DC-DC power converters; Electromagnetic interference; Fuel cells; Photovoltaic systems; Power generation; Resonance; Snubbers; Solar power generation; Surges; Switches;
fLanguage
English
Publisher
ieee
Conference_Titel
Telecommunications Energy Conference, 2003. INTELEC '03. The 25th International
Conference_Location
Yokohama, Japan
Print_ISBN
4-88552-196-3
Type
conf
Filename
1252086
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