DocumentCode
3298992
Title
The analysis of TRIAC dimming LED driver by variable switched capacitor for long life and high power-efficient applications
Author
Lee, Eun S. ; Choi, Bo H. ; Nguyen, Duy T. ; Rim, Chun T.
Author_Institution
Dept. of Nucl. & Quantum Eng., KAIST, Daejeon, South Korea
fYear
2015
fDate
1-5 June 2015
Firstpage
54
Lastpage
59
Abstract
The analysis of the proposed TRIAC dimming LED driver, which adopts a variable switched capacitor, is proposed in this paper. Because the proposed LED driver adopts a TRIAC switch as the main switch, it is proven to be power-efficient and reliable over long life. Similar to the previous TRIAC dimmers of lamps, turn-on timing of a TRIAC can be controlled by a volume resistor in the proposed LED driver, which modulates the effective capacitance of the variable switched capacitor. Thus, LED power regulation for source voltage change and LED dimming control can be achieved, meeting the standard of power factor (PF) and total harmonic distortion (THD). Because the proposed LED driver has long life and high power efficiency characteristics, it is adequate for industrial lighting applications such as street, factory, parking garage, and emergency stair. The detail analysis of the proposed LED driver is presented in this paper. A prototype of 80 W was fabricated and verified by experiments, which show the efficiency, PF, and THD at Vs = 220 V are 93.8%, 0.95, and 22.5%, respectively, and the LED power variation is well mitigated below 3.75% for 190 V <; Vs <; 250 V.
Keywords
driver circuits; harmonic distortion; light emitting diodes; lighting control; power control; semiconductor switches; LED dimming control; LED power regulation; THD; TRIAC dimming LED driver; emergency stair; high power-efficient applications; industrial lighting; parking garage; power factor; source voltage change; total harmonic distortion; variable switched capacitor; volume resistor; Capacitors; Inductors; LED lamps; Switches; Thyristors; LED dimming; LED power regulation; TRIAC dimming control; variable switched capacitance;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics and ECCE Asia (ICPE-ECCE Asia), 2015 9th International Conference on
Conference_Location
Seoul
Type
conf
DOI
10.1109/ICPE.2015.7167766
Filename
7167766
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