DocumentCode
2650015
Title
Advanced development of voltage source soft-switching high-frequency inverter for silent discharge tube loads
Author
Koudriavtsev, Oleg ; Wang, Shengpei ; Nakaoka, Mutsuo
Author_Institution
Graduate Sch. of Eng., Yamaguchi Univ., Japan
Volume
1
fYear
2000
fDate
2000
Firstpage
302
Abstract
Ozone utilizing technologies, ultraviolet light and excimer laser applications are spreading very rapidly and have tends to enter daily life as small-size desinfection, ozonation devices etc. Since silent discharge in gas has been recognized as one of the most effective ways for ozone, ultraviolet and excimer laser generation, the development of low cost and high effective driver for silent discharge load becomes the task of great importance. This paper presents a switched-mode power supply designed for such type of load. Introduced here is a voltage source type resonant inverter, operating under ZVS (zero voltage switching) principle and developed for driving a silent discharge (SD) type high-frequency ozone generation tube. Applied in this inverter, a PDM (pulse density modulation) and PFM (pulse frequency modulation) hybrid control strategy allows to achieve zero voltage switching in all power regulating ranges (10-100%) that reduces total switching losses and EMI noises and increases total system efficiency
Keywords
DC-AC power convertors; PWM invertors; gas-discharge tubes; load (electric); switched mode power supplies; switching circuits; EMI noises reduction; ZVS; efficiency improvement; excimer laser generation; ozone generation; ozone utilizing technologies; power regulating ranges; pulse density modulation; pulse frequency modulation; silent discharge tube loads; switched-mode power supply; switching losses reduction; ultraviolet generation; voltage source soft-switching high-frequency inverter; zero voltage switching; Costs; Fault location; Gas lasers; Laser applications; Pulse inverters; Pulse modulation; Pulsed power supplies; Resonant inverters; Switched-mode power supply; Zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics and Motion Control Conference, 2000. Proceedings. IPEMC 2000. The Third International
Conference_Location
Beijing
Print_ISBN
7-80003-464-X
Type
conf
DOI
10.1109/IPEMC.2000.885419
Filename
885419
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