Title :
Control Loop Design for a PFC Boost Converter With Ripple Steering
Author :
Musavi, Fariborz ; Edington, Murray ; Eberle, William ; Dunford, William G.
Author_Institution :
Delta-Q Technol. Corp., Burnaby, BC, Canada
Abstract :
In this paper, an average switch model approach to the power stage modeling, feedback compensation network design, and dynamic analysis of power factor correction (PFC) boost converters with ripple steering is presented. The model is expressed by the derivation of power stage transfer functions for a conventional boost converter and then followed by the derivation of the power stage transfer functions for a boost converter with ripple steering. A detailed design procedure and comparison of both voltage and current feedback loops are given in a conventional PFC boost converter and boost converter with ripple steering. Experimental and simulation results of a prototype boost converter converting universal ac input voltage to 400 V dc at 1.6 kW are given to verify the proof of concept and analytical work reported. The experimental results demonstrate that the model can correctly predict the steady-state behavior of a continuous conduction mode PFC boost converter with ripple steering.
Keywords :
AC-DC power convertors; compensation; control system synthesis; feedback; power factor correction; transfer functions; AC-DC power converter; PFC boost converter; average switch model approach; continuous conduction mode; control loop design; current feedback loop; dynamic analysis; feedback compensation network design; power 1.6 kW; power factor correction; power stage modeling; power stage transfer function; ripple steering; steady-state behavior; universal AC input voltage; voltage 400 V; voltage feedback loop; Capacitors; Gain; Inductors; Integrated circuit modeling; Switches; Transfer functions; Windings; AC–DC power converters; average switch model; boost converter; coupled magnetic; dc–dc power converters; feedback compensation design; power conversion; power factor correction (PFC); ripple steering;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2012.2227640