Title :
The Voltage-Controlled Compensation Ramp: A Waveshaping Technique for Power Factor Correctors
Author :
Sebastián, Javier ; Lamar, Diego González ; De Azpeitia, Manuel Arias Pérez ; Rodríguez, Miguel ; Fernández, Arturo
Author_Institution :
Dept. de Ing. Electr., Electron. de Comput. y de Sist., Univ. de Oviedo, Gijon
Abstract :
This paper deals with a new control method for power factor correctors. Control is carried out by a standard IC controller for peak current-mode DC-DC converters, with only an additional compensation ramp generator and peak detector. The fact that neither an analog multiplier nor an input voltage sensor is needed to achieve quasi-sinusoidal line waveforms makes this method very attractive. The method is similar to the one-cycle control method, but can be very easily adapted for use with topologies different to the boost converter, i.e., flyback, buck-boost, single-ended primary inductance converter, Cuk, and zeta topologies. Moreover, as the line current is cycle-by-cycle controlled, the resulting input current feedback loop is extremely fast, thus allowing the use of this type of control with high-frequency lines.
Keywords :
AC-DC power convertors; DC-DC power convertors; power factor correction; voltage control; Cuk topology; IC controller; analog multiplier; boost converter; buck-boost topology; compensation ramp generator; flyback topology; input voltage sensor; one-cycle control method; peak current-mode DC-DC converters; peak detector; power factor correctors; quasi-sinusoidal line waveforms; single-ended primary inductance converter; voltage-controlled compensation ramp; waveshaping technique; zeta topology; Circuits; Control systems; Costs; Diodes; Feedback loop; Power supplies; Reactive power; Switching converters; Topology; Voltage control; AC-DC power conversion; control of power converters; harmonic distortion; power factor correction; power supplies;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2009.2018935