Title :
Single-stage single-switch isolated PFC regulator with unity power factor, fast transient response and low voltage stress
Author :
Chow, M.H.L. ; Lee, Y.S. ; Tse, C.K.
Author_Institution :
Dept. of Electron. Eng., Hong Kong Polytech. Univ., Hong Kong
Abstract :
In this paper a simple control method is presented for a single-stage single-switch isolated PFC regulator that can simultaneously achieve unity power factor and fast output voltage regulation, while keeping the voltage stress of the storage capacitor low. The power converter topology comprises essentially a cascade combination of a discontinuous-mode boost converter and a continuous-mode forward converter. The proposed control utilises variation of both duty cycle and frequency. The role of varying the duty cycle is mainly to regulate the output voltage. Changing the frequency, moreover, can achieve unity power factor as well as low voltage stress. Basically, the switching frequency is controlled such that it has a time periodic component superposed on top of a static value. While the time periodic component removes the harmonic contents of the input current, the static value is adjusted according to the load condition so as to maintain a sufficiently low voltage stress across the storage capacitor. The theory is first presented which shows the possibility of meeting all three requirements using a combined duty-cycle and frequency control. An experimental prototype circuit is presented to verify the controller´s functions
Keywords :
capacitor storage; control system synthesis; power capacitors; power convertors; power factor correction; switching circuits; transient response; voltage control; continuous-mode forward converter; control method; discontinuous-mode boost converter; duty cycle variation; frequency variation; harmonic content; output voltage regulation; power converter topology; single-stage single-switch isolated PFC regulator; storage capacitor; switching frequency; time periodic component; transient response; unity power factor; voltage stress; Capacitors; Frequency control; Low voltage; Prototypes; Reactive power; Regulators; Stress control; Switching frequency; Topology; Voltage control;
Conference_Titel :
Power Electronics Specialists Conference, 1998. PESC 98 Record. 29th Annual IEEE
Conference_Location :
Fukuoka
Print_ISBN :
0-7803-4489-8
DOI :
10.1109/PESC.1998.703234