Title :
Electronic Ballast for Metal Halide Lamps Using a Quasi-Resonant Inverter With Digital Control
Author :
Wang, Yijie ; Xu, Dianguo ; Wang, Wei ; Zhang, Xiangjun ; Xu, Bo
Author_Institution :
Sch. of Electr. Eng. & Autom., Harbin Inst. of Technol., Harbin, China
fDate :
4/1/2012 12:00:00 AM
Abstract :
A digital control electronic ballast for the metal halide lamp is proposed based on the low-frequency square wave, and a comprehensive control strategy is employed for the zero-voltage-switching quasi-square-wave dual buck converter. To achieve the self-adaptive zero-voltage-switching control, the digital control method is used, which greatly reduces the switching losses of the circuit. A single-cycle-peak-current control method is adopted to restrain the overcurrent generated by reversing during the low-frequency transition from the turn-on to the steady state. The complicated process of igniting is analyzed in detail, and a constant-current control method is proposed to diminish the power overshoot and to decrease the current and voltage stress in the transition stage. A power closed-loop duty ratio control method is adopted, and its correctness is proved. An experimental prototype of 70 W is implemented, and the system can achieve reliable operation from the transient state to the steady state, with the highest efficiency of 92% and with no acoustic resonance occurring.
Keywords :
closed loop systems; digital control; electric current control; lamp accessories; metal vapour lamps; zero voltage switching; constant-current control method; digital control; electronic ballast; low-frequency square wave; low-frequency transition; metal halide lamps; power closed-loop duty ratio control method; quasiresonant inverter; single-cycle-peak-current control method; switching losses; zero-voltage-switching quasisquare-wave dual buck converter; Electronic ballasts; Frequency conversion; High intensity discharge lamps; Switches; Time frequency analysis; Zero voltage switching; Acoustic resonance (AR); ZVS quasi-square-wave (ZVS-QSW); digital control; low-frequency square wave; single-cycle-peak-current control (SCPCC); zero voltage switching (ZVS);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2011.2141100