Title :
DCM detection for on-line adaption of control parameters for totem-pole PFC rectifier
Author :
Henkenius, Carsten ; Frohleke, Norbert ; Bocker, Joachim ; Figge, Heiko ; Grote, Tobias
Author_Institution :
Power Electron. & Electr. Drives, Univ. of Paderborn, Paderborn, Germany
Abstract :
This paper presents a current control method for totem-pole PFC-rectifiers which avoids the need for expensive sensing circuits. The design makes use of only one switch current as current feedback signal. The control method is based on a detection algorithm for conduction mode detection in mixed conduction mode (MCM) operation. Using a DSP the mode detection is calculated on-line and based on the detection state the control algorithm adapts the control parameters in a few DSP cycles. This simple current assessment enables calculation of the a control-to-inductor model for discontinuous operation mode (DCM) to modify the current loop characteristic. The controller design was performed offline and is based on the nonlinear average current mode control. Control characteristics and performance of the new method are verified by measurement results on an interleaved totem-pole PFC-rectifier for on-board charger applications with 3600 W output power. Conducted efficiency and power factor measurements illustrate the excellent performance of the converter.
Keywords :
digital signal processing chips; electric current control; mixed conductivity; power factor measurement; power system measurement; rectifiers; switched mode power supplies; DCM detection; DSP cycles; MCM operation; conduction mode detection; control-to-inductor model; current control method; current feedback signal; current mode control; detection algorithm; discontinuous operation mode; interleaved totem-pole PFC-rectifier; mixed conduction mode operation; on-board charger applications; online adaption; power 3600 W; power factor measurements; sensing circuits; switch current; totem-pole PFC rectifier; Digital signal processing; Inductors; Mathematical model; Sensors; Switches; Transfer functions;
Conference_Titel :
Industrial Technology (ICIT), 2015 IEEE International Conference on
Conference_Location :
Seville
DOI :
10.1109/ICIT.2015.7125400