A new digital controlled, bridgeless ac/dc buck converter that operates in discontinuous-input-voltage mode (DIVM) is presented. It has inherent power factor correction property and draws continuous input current during conduction period with a constant duty cycle. In addition, the efficiency of the proposed buck PFC rectifier is improved by adopting a bridgeless configuration. The converter also works as a voltage doubler which reduces the size of the output capacitors. Detailed operating analysis, design criteria, and modeling of the buck converter are reported. Experimental results for verifying the theoretical analysis are also presented. © 2011 IEEE
This paper deals with the design, analysis, simulation and development of a PFC (Power Factor Correc...
A single-stage single-switch AC–DC integrated converter is proposed in this paper, as a tight DC vol...
In order to implement a high-efficiency bridgeless power factor correction converter, a new topology...
A new digitally controlled, bridgeless AC/DC buck converter that operates in discontinuous-input-vol...
Power factor correction (PFC) is now mandatory in modern power electronic systems due to the awaren...
This paper presents a generalized approach to deriving single-phase power factor correction (PFC) ci...
Abstract—This paper presents a generalized approach to deriving single-phase power factor correction...
By adding a suitable LC filter to the input of a Buck converter, it is possible to force the convert...
A LC filter can be added to the input of the conventional buck converter to make the converter opera...
In recent years AC-DC converters have found wide applications in industry.AC-DC converters with step...
Abstract-In this paper a new bridgeless SEPIC single phase ac-dc power factor correction(PFC) rectif...
By adding a suitable LC filter to the input of a Buck converter, a high-power-factor buck converter ...
Abstract- This paper describes a digital pulse-width modulation/pulse-frequency modulation (PWM/PFM)...
Many electronic power distribution systems have strong needs for highly efficient AC-DC conversion t...
In this paper, a new bridgeless single-phase AC–DC power factor corrector is presented. The proposed...
This paper deals with the design, analysis, simulation and development of a PFC (Power Factor Correc...
A single-stage single-switch AC–DC integrated converter is proposed in this paper, as a tight DC vol...
In order to implement a high-efficiency bridgeless power factor correction converter, a new topology...
A new digitally controlled, bridgeless AC/DC buck converter that operates in discontinuous-input-vol...
Power factor correction (PFC) is now mandatory in modern power electronic systems due to the awaren...
This paper presents a generalized approach to deriving single-phase power factor correction (PFC) ci...
Abstract—This paper presents a generalized approach to deriving single-phase power factor correction...
By adding a suitable LC filter to the input of a Buck converter, it is possible to force the convert...
A LC filter can be added to the input of the conventional buck converter to make the converter opera...
In recent years AC-DC converters have found wide applications in industry.AC-DC converters with step...
Abstract-In this paper a new bridgeless SEPIC single phase ac-dc power factor correction(PFC) rectif...
By adding a suitable LC filter to the input of a Buck converter, a high-power-factor buck converter ...
Abstract- This paper describes a digital pulse-width modulation/pulse-frequency modulation (PWM/PFM)...
Many electronic power distribution systems have strong needs for highly efficient AC-DC conversion t...
In this paper, a new bridgeless single-phase AC–DC power factor corrector is presented. The proposed...
This paper deals with the design, analysis, simulation and development of a PFC (Power Factor Correc...
A single-stage single-switch AC–DC integrated converter is proposed in this paper, as a tight DC vol...
In order to implement a high-efficiency bridgeless power factor correction converter, a new topology...