DocumentCode
79720
Title
Design and Test of a 35-kJ/s High-Voltage Capacitor Charger Based on a Delta-Connected Three-Phase Resonant Converter
Author
Suk-Ho Ahn ; Hong-Je Ryoo ; Ji-woong Gong ; Sung-Roc Jang
Author_Institution
Dept. of Energy Conversion, Univ. of Sci. & Technol., Changwon, South Korea
Volume
29
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
4039
Lastpage
4048
Abstract
This paper describes the design, implementation, and analysis of a 35 kJ/s high-voltage capacitor charger based on a delta-connected three-phase series resonant converter that provides a constant charging current with high efficiency and high-power density. In order to obtain the maximum output power for various charging voltages, each high-voltage transformer supplied by a delta-connected resonant inverter is designed with two secondary windings and voltage-doubled rectifiers. This configuration allows not only a flexible output current and voltage with fixed output power but also a high power factor on the input side. On the basis of the analysis of the series-loaded resonant converter operating at a discontinuous conduction mode, the details of the design procedure for the resonant inverter are provided. Furthermore, the implementation of the high-voltage transformers and rectifiers is also explained while considering insulation and compactness. Experiments were carried out on the developed charger with different types of capacitors, depending on their applications, and the results are discussed. In addition, malfunctioning tests were conducted for the open, short, and misfiring during charging conditions. Finally, the developed high-voltage capacitor charger was shown to be very reliable, even under faulty operating conditions in the system.
Keywords
power factor; power transformer insulation; pulsed power supplies; rectifying circuits; resonant invertors; constant charging current; delta-connected resonant inverter; delta-connected three-phase resonant converter; design procedure; discontinuous conduction mode; fixed output power; flexible output current; high power factor; high-power density; high-voltage capacitor charger; high-voltage transformer; secondary windings; series-loaded resonant converter analysis; voltage-doubled rectifiers; Capacitors; Density measurement; Rectifiers; Resonant inverters; Topology; Voltage control; Windings; High-voltage capacitor charger; pulsed-power applications; series-loaded resonant converter;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2013.2287709
Filename
6654339
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