Title :
A Multifunctional Digital Controller for a High-Power-Factor Electronic Ballast Dimmable With Standard Phase-Cut Dimmers
Author :
Lam, John C. W. ; Hui, Joanne C. Y. ; Jain, P.K.
Author_Institution :
Queen´s Centre for Energy & Power Electron. Res. (ePOWER), Queen´s Univ., Kingston, ON, Canada
Abstract :
This paper proposes a novel multifunctional controller for a dimmable high-power-factor single-switch electronic ballast that can be used with standard phase-cut dimmers. Conventional dimmable electronic ballasts lack the ability to 1) provide smooth dimming and maintain high power factor when phase-cut dimmers are used and 2) regulate the lamp power when the input line voltage varies. A digital controller with multiple control functions is proposed in this paper. The proposed controller allows high power factor to be achieved by controlling the duty cycle during dimming with standard phase-cut dimmers. On the other hand, when dimming is not required, the lamp power is regulated through the regulation of the dc-link voltage. Additional control functions, such as lamp low-power cutoff operation, and protection function are also implemented inside the digital controller. The descriptions of the controller operating principles and its logic flow diagrams are provided in this paper. PSIM simulation and experimental results are provided on a 13-W compact fluorescent lamp to highlight the merits of the proposed work.
Keywords :
digital control; fluorescent lamps; lamp accessories; power control; power factor; voltage control; PSIM simulation; compact fluorescent lamp; dc-link voltage regulation; dimmable high-power-factor single-switch electronic ballast; duty cycle control; high power factor; input line voltage variation; lamp low-power cutoff operation; lamp power regulation; logic flow diagrams; multifunctional digital controller; protection function; standard phase-cut dimmers; Digital control; Electronic ballasts; Ignition; MOSFET; Radiation detectors; Reactive power; Video recording; Digital control; Electronic ballast; digital control; electronic ballast; lighting control;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2292994