DocumentCode :
1292354
Title :
Development and Optimization of High-Voltage Power Supply System for Industrial Magnetron
Author :
Jang, Sung-Roc ; Ryoo, Hong-Je ; Ahn, Suk-Ho ; Kim, Jongsoo ; Rim, Geun Hie
Author_Institution :
Dept. of Energy & Power Conversion Eng., Univ. of Sci. & Technol., Daejeon, South Korea
Volume :
59
Issue :
3
fYear :
2012
fDate :
3/1/2012 12:00:00 AM
Firstpage :
1453
Lastpage :
1461
Abstract :
This paper describes the design and analysis of a 42-kW (14 kV, 3 A) high-voltage power supply for a 30-kW industrial magnetron drive. The design is based on a series resonant converter in discontinuous conduction mode (DCM) to take advantage of both the superior arc protection stemming from the current source characteristics and the high power density owing to the use of parasitic elements such as the leakage inductance in the high-voltage transformer. The detailed design procedure for the resonant tank and high-voltage transformer with respect to the input and output specifications is described on the basis of a simplified analysis of the DCM series resonant converter. Special considerations for designing high-power high-voltage power supplies are provided, such as series stacking of diodes for a voltage doubling rectifier and insulation between each winding of the high-voltage transformer. In addition, a comparative study using theoretical equations, simulation, and experimental results was carried out. This study yielded the output voltage and current characteristics at different switching frequencies and verified the advantages of this topology, such as arc protection without an additional protection circuit and high efficiency due to zero-current or zero-voltage switching. Moreover, the parallel operation of two converters with phase shifted gating signal is proposed to reduce the output current ripple and increase power capability for higher power magnetron drive. Additionally, the design considerations of two auxiliary power supplies (a filament power supply: 15 V, 150 A and a magnet power supply: 50 V, 5 A) are also provided and optimized for effective driving industrial magnetron. Finally, the developed power supply was tested with a 30-kW industrial magnetron, and the results prove the reliability and robustness of the proposed scheme.
Keywords :
magnetrons; optimisation; power supply quality; power transformers; rectifiers; reliability; resonant power convertors; zero current switching; zero voltage switching; DCM series resonant converter; arc protection; auxiliary power supplies; current 150 A; current 3 A; current 5 A; discontinuous conduction mode; high-power power supplies; high-voltage power supply system; high-voltage transformer; industrial magnetron drive; leakage inductance; optimization; parasitic elements; phase shifted gating signal; power 30 kW; reliability; switching frequencies; voltage 14 kV; voltage 15 V; voltage 50 V; voltage doubling rectifier; zero-current switching; zero-voltage switching; Capacitors; Inductance; Magnetic circuits; Magnetic resonance; Microwave oscillators; Power generation; Power supplies; High-voltage power supply; industrial magnetron; series resonant converter; transformer design;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2163915
Filename :
5977024
Link To Document :
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