Title :
A novel single-stage high-power-factor electronic ballast with symmetrical topology
Author :
Cheng, Hung L. ; Moo, Chin S. ; Chen, Wei M.
Author_Institution :
Chung Shan Inst. of Sci. & Technol., Taoyuan, Taiwan
Abstract :
This paper proposes a novel single-stage high-power-factor high-efficiency electronic ballast with symmetrical topology for fluorescent lamps. The circuit topology originates from the integration of two half-wave rectifiers with buck-boost power-factor-correction converters and a half-bridge series-resonant parallel-loaded inverter. A high power factor at the input line is assured by operating the buck-boost converters in discontinuous conduction mode. With symmetrical operation and carefully designed circuit parameters, zero-voltage switching on the active power switches of the inverter can be retained to achieve high circuit efficiency. The design equations are derived from the analyzed results based on fundamental approximation, and then an easy-to-use design tool is provided accordingly under considerations of filament heating and ignition. A prototype circuit designed for two T9-40W rapid-start fluorescent lamps is built and tested to verify the analytical predictions. Satisfactory performance is obtained from the experimental results.
Keywords :
AC-DC power convertors; bridge circuits; fluorescent lamps; invertors; lamp accessories; power factor correction; rectifying circuits; resonant power convertors; switching convertors; 40 W; active power switches; buck-boost converters; buck-boost power-factor-correction converters; circuit topology; discontinuous conduction mode; easy-to-use design tool; filament heating; fluorescent lamps; half-bridge series-resonant parallel-loaded inverter; half-wave rectifiers; high circuit efficiency; ignition; input line; inverter; rapid-start fluorescent lamps; single-stage high-power-factor electronic ballast; symmetrical topology; zero-voltage switching; Circuit testing; Circuit topology; Electronic ballasts; Equations; Fluorescent lamps; Heating; Inverters; Reactive power; Rectifiers; Zero voltage switching;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2003.814865