Control techniques for high power factor rectifiers which do not need input voltage sensing are gaining considerable attention due to their simpler implementation and inherently superior stability, as compared to conventional average or peak current mode control. Among these, the solutions based on integration of a current signal (switch, diode or inductor current) provide an inherent noise immunity, which makes them further appealing. This paper proposes a simple implementation of one of such control techniques for high power factor flyback, Cuk or Sepic rectifiers, which, while still retaining a high power factor, further reduces the control complexity, thus making the solution very attractive for smart-power integration. A 200 W flyback rectifier with the proposed control technique was implemented and tested. The achieved results are in good agreement with the expected performance.

Simplified Control Technique for High-Power-Factor Flyback Cuk and Sepic Rectifiers operating in CCM

SPIAZZI, GIORGIO;BUSO, SIMONE;
1999

Abstract

Control techniques for high power factor rectifiers which do not need input voltage sensing are gaining considerable attention due to their simpler implementation and inherently superior stability, as compared to conventional average or peak current mode control. Among these, the solutions based on integration of a current signal (switch, diode or inductor current) provide an inherent noise immunity, which makes them further appealing. This paper proposes a simple implementation of one of such control techniques for high power factor flyback, Cuk or Sepic rectifiers, which, while still retaining a high power factor, further reduces the control complexity, thus making the solution very attractive for smart-power integration. A 200 W flyback rectifier with the proposed control technique was implemented and tested. The achieved results are in good agreement with the expected performance.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/172444
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