Title :
A Novel Dimming Electronic Ballast with Improved Crest Factor Using Valley Fill Current Source Resonant Inverter
Author :
Lam, John ; Jain, Praveen K.
Author_Institution :
Power Electron. Appl. Res. Lab., Queen´´s Univ., Kingston, Ont.
Abstract :
In this paper, a high power factor dimming valley fill electronic ballast based on a half-bridge current source resonant inverter using continuous variable frequency control is presented. The advantage of using a current fed resonant inverter in the proposed power circuit is that it provides isolation to the driver circuit without the use of any isolation devices. The input inductors of the inverter introduce a new operating mode that is able to shape the input current when the inverter is combined with a valley fill circuit using output current regulation. A simple modified 555 timer is used to continuously regulate the lamp current by changing the switching frequency. As a result, dimming capability and low lamp crest factor are achieved with high power factor to be maintained. A detailed description on the operating principles of the proposed circuit is given in this paper. Feedback loop analysis is also provided to study the stability issues of the designed controller for the proposed ballast circuit. Powersim (PSIM) simulation and experimental results are presented to highlight the merits of the proposed circuit for a 20 W compact fluorescent lamp
Keywords :
control system synthesis; driver circuits; electric current control; feedback; fluorescent lamps; frequency control; lamp accessories; lighting control; power factor; resonant invertors; stability; timing circuits; 20 W; 555 timer; PSIM; Powersim simulation; ballast circuit; compact fluorescent lamp; continuous variable frequency control; crest factor; dimming electronic ballast; driver circuit; feedback loop analysis; high power factor; lamp current regulation; output current regulation; power circuit; switching frequency; valley fill current source resonant inverter; Current control; Driver circuits; Electronic ballasts; Feedback loop; Frequency control; Inductors; RLC circuits; Reactive power; Resonant inverters; Switching frequency;
Conference_Titel :
Industrial Electronics, 2006 IEEE International Symposium on
Conference_Location :
Montreal, Que.
Print_ISBN :
1-4244-0496-7
Electronic_ISBN :
1-4244-0497-5
DOI :
10.1109/ISIE.2006.295790