Title :
Implementation of an HB-LED driver with PFC and output power control
Author :
Chamorro Martinez, Jorge Andres ; Arciniegas Mejia, Mario Hernan ; Revelo Fuelagan, Javier
Author_Institution :
Dept. de Electron., Univ. de Narino, Pasto, Colombia
Abstract :
This work presents a novel HB-LEDs driver designed to solve some of the problems found in commercial LED lamp drivers. This driver includes dimming capability designed for intelligent lightning applications and incorporates a power factor correction method (PFC) to prevent negative effects of current distortion over the mains circuit. The circuit is composed by two main sections: power section and control section. The power section consists on a multi level electronic power converter where the first stage has a boost topology with a current controller performing the PFC function, based on hysteresis comparison. The second stage has a buck topology and it is designed to regulate the power delivered to the LED strings. Both stages are coupled with a digital controller which additionally serves to establish and track a power reference for the LED strings in order to vary the light intensity. A prototype was built based on the design for evaluation. The design implementation provided data that was analysed in terms of efficiency, harmonic distortion and power factor according to regulatory standards. The results were compared with commercial LED lamp drivers characteristics, obtaining significative improvement in energy quality indicators.
Keywords :
LED lamps; digital control; driver circuits; electric current control; hysteresis; power control; power convertors; power factor correction; HB-LED driver; LED strings; PFC; boost topology; buck topology; commercial LED lamp drivers; control section; current controller; current distortion; digital controller; dimming capability; energy quality indicators; harmonic distortion; hysteresis comparison; intelligent lightning; light intensity; multi level electronic power converter; power factor correction method; power reference; power section; Electronic mail; Irrigation; Light emitting diodes; MIMO; Pulse width modulation; Silicon compounds; Topology; HB-LEDs; Hysteretic Control; LED Dimming; MIMO Control; PFC; Power Electronic Converters; Power Quality; dsPIC;
Conference_Titel :
Power Electronics and Power Quality Applications (PEPQA), 2015 IEEE Workshop on
Conference_Location :
Bogota
DOI :
10.1109/PEPQA.2015.7168210