Title :
Acoustic-Resonance-Free High-Frequency Electronic Ballast for Metal Halide Lamps
Author :
Moo, Chin-Sien ; Huang, Chun-Kai ; Yang, Ching-Yuan
Author_Institution :
Dept. of Electr. Eng., Nat. Sun Yat-Sen Univ., Kaohsiung
Abstract :
To avoid the acoustic resonance on operating metal halide lamps, an autofrequency-searching method is implemented on the high-frequency electronic ballast. The proposed method allows the use of a high-frequency electronic ballast, making the ballast able to adjust the operating frequency automatically as soon as the acoustic resonance is detected and, consequently, to locate it at a stable frequency. The electronic ballast achieves a high efficiency and a high power density through the employment of a high-frequency resonant inverter with an embedded buck-boost converter for power-factor correction and lamp power regulation. The control strategy is realized by a microprocessor along with the acoustic-resonance detection circuit. The operation of autofrequency searching is illustrated by the experiments on an electronic ballast designed for 70-W metal halide lamps.
Keywords :
acoustic resonance; frequency control; frequency stability; lamp accessories; lamps; power control; power convertors; power factor correction; resonant invertors; acoustic-resonance detection circuit; acoustic-resonance-free high-frequency electronic ballast; autofrequency-searching method; embedded buck-boost converter; frequency stability; high-frequency resonant inverter; lamp power regulation; metal halide lamps; microprocessor; power 70 W; power-factor correction; Acoustic Resonance; Acoustic resonance; Auto-Frequency-Searching; Electronic Ballast; Metal Halide Lamp; autofrequency searching; electronic ballast; metal halide lamp;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2008.923289