DocumentCode
1882450
Title
Reduction of the output capacitor in Power Factor Correctors by distorting the line input current
Author
Lamar, Diego G. ; Sebastián, Javier ; Arias, Manuel ; Fernández, Arturo
Author_Institution
Grupo de Sist. Electronicos de Alimentacion (SEA), Univ. de Oviedo, Gijon, Spain
fYear
2010
fDate
21-25 Feb. 2010
Firstpage
196
Lastpage
202
Abstract
Active Power Factor Correctors (PFCs) are needed to design ac-dc power supplies with universal input voltage range and sinusoidal input current. The classical method to control PFCs consists in two feedback loops and an analog multiplier. Hence, the input current is sinusoidal and it is in phase with the input voltage. However, a bulk capacitor is needed to balance the input power and the output power. Due to its high capacitance, an electrolytic capacitor is traditionally used as a bulk capacitor in PFCs. As a consequence, the lifetime of the ac-dc power supply is limited by the electrolytic capacitor´s, which becomes insufficient to some applications (e.g. High-Brightness Light Emitting Diodes, HB-LEDs). This paper proposes a reduction of the output voltage ripple (which allows reduction of the output capacitance) by distorting the input current, but maintaining the harmonic continent compatible with EN 61000-3-2 regulations. Also, a control strategy with a low-cost microcontroller is developed to put the proposed study into practice. Finally, the theoretical results are validated in a 500 W prototype.
Keywords
electrolytic capacitors; feedback; light emitting diodes; power capacitors; power factor correction; power supplies to apparatus; EN 61000-3-2 regulations; ac-dc power supplies; active power factor correctors; analog multiplier; bulk capacitor; electrolytic capacitor; feedback loops; high-brightness light emitting diodes; line input current; low-cost microcontroller; output capacitor reduction; power 500 W; sinusoidal input current; universal input voltage range; Capacitance; Continents; Feedback loop; Harmonic distortion; Light emitting diodes; Power capacitors; Power generation; Power supplies; Reactive power; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Power Electronics Conference and Exposition (APEC), 2010 Twenty-Fifth Annual IEEE
Conference_Location
Palm Springs, CA
ISSN
1048-2334
Print_ISBN
978-1-4244-4782-4
Electronic_ISBN
1048-2334
Type
conf
DOI
10.1109/APEC.2010.5433672
Filename
5433672
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