Title :
Variable On-Time (VOT)-Controlled Critical Conduction Mode Buck PFC Converter for High-Input AC/DC HB-LED Lighting Applications
Author :
Wu, Xinke ; Yang, Jianyou ; Zhang, Junming ; Qian, Zhaoming
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
For high input voltage (>;264 Vac) ac/dc applications, a buck power factor correction (PFC) converter is a good choice because of its low output voltage, high efficiency, lifetime improvement, and cost reduction by using a low voltage rating (<;200 V) electrolytic capacitor. However, due to the inherent dead angle of the input current, the harmonics of the buck PFC converter are high, which limits its application in lighting systems. In order to make the buck PFC converter meet the harmonics requirements (IEC61000-3-2, Class C) in lighting applications, this paper proposes a variable on-time controller for a critical conduction mode (CRM) buck PFC front-end converter for isolated high-brightness LED applications. By feedforwarding the input voltage and regulating the on-time of the switch, the high-order harmonics can be reduced to meet the lighting system limitations. Experimental results obtained on a 150-W CRM buck front-end PFC prototype show that the efficiency of buck PFC exceeds 96% during the entire line input range (250-530 Vac) at full load, and the current harmonics content can meet the harmonic requirements.
Keywords :
AC-DC power convertors; IEC standards; brightness; electrolytic capacitors; light emitting diodes; lighting; power factor correction; power system harmonics; CRM buck front-end PFC prototype; IEC61000-3-2; ac/dc applications; buck power factor correction converter; cost reduction; current harmonics content; harmonic requirements; harmonics requirements; high-input AC/DC HB-LED lighting applications; high-order harmonics; inherent dead angle; isolated high-brightness LED applications; lifetime improvement; lighting system limitations; lighting systems; low voltage rating electrolytic capacitor; power 150 W; variable on-time controller; variable on-time-controlled critical conduction mode buck PFC converter; voltage 250 V to 530 V; Harmonic analysis; Lighting; Modulation; Power harmonic filters; Reactive power; Switches; Voltage control; AC/DC; LED driver; harmonics; high input voltage;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2011.2169812