DocumentCode :
1329252
Title :
Digitally Controlled Low-Frequency Square-Wave Electronic Ballast With Resonant Ignition and Power Loop
Author :
Díaz, F. Javier ; Azcondo, Francisco J. ; Brañas, Christian ; Casanueva, Rosario ; Zane, Regan
Author_Institution :
Electron. Technol., Syst. & Autom. Eng. Dept., Univ. of Cantabria, Santander, Spain
Volume :
46
Issue :
6
fYear :
2010
Firstpage :
2222
Lastpage :
2232
Abstract :
This paper proposes a digital controller for a low-frequency square-wave (LFSW) electronic ballast that includes the ignition sequence, a double control loop, and the selection of the positive and negative operation modes. The whole ballast is a two-stage circuit, where the first part is a power factor correction (PFC) stage and the second is a full-bridge (FB) converter used for both ignition and square-wave drive. Ignition is achieved by approaching the resonant frequency of the LC filter when the lamp is in the off state and the FB is working as a resonant inverter. After ignition, the converter operates as an LFSW inverter by controlling the FB to act alternately as a buck converter supplying positive or negative current. While ignition occurs at the LC filter resonance frequency (fo = 20 kHz), the buck converter switching frequency (fsw = 200 kHz) is selected significantly higher than fo to attenuate high-frequency harmonics and avoid exciting acoustic resonance. Lamp stability is achieved by controlling the inductor current of the LC filter, and power mode control is achieved by adjusting the average current and voltage supplied by the PFC stage. The solution is experimentally validated for different types of 150-W high-intensity discharge lamps. A coupled-inductor single-ended primary inductance converter operating in continuous conduction mode is used for the PFC stage.
Keywords :
bridge circuits; digital control; filters; lamp accessories; lighting control; power convertors; power factor correction; resonant invertors; stability; LC filter; buck converter; digitally controlled electronic ballast; double control loop; full bridge converter; lamp stability; low frequency square wave electronic ballast; power factor correction; power loop; resonant ignition; resonant inverter; Acoustic resonance; Converters; Electronic ballasts; High intensity discharge lamps; Inductors; Lamps; Resonant frequency; Acoustic resonance; buck converter; converter modeling; coupled-inductor single-ended primary inductance converter (SEPIC); digital control; low-frequency square-wave (LFSW); metal halide lamps (MHLs);
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2010.2073431
Filename :
5580054
Link To Document :
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