Title :
Design of a robust digital controller for a PFC boost converter
Author :
Adachi, Yuto ; Ohta, Yoshihiro ; Kajikawa, Tatsuyoshi ; Higuchi, Kohji
Author_Institution :
Dept. of Mech. Eng. & Intell. Syst., Univ. of Electro-Commun., Chofu, Japan
Abstract :
A PFC boost converter is a non-linear system whose small perturbation model is changed at each operating point depending on a duty ratio. And when the duty ratio, a load resistance and an input voltage are changed, the small perturbation model is changed greatly. The robust controller for the PFC boost converter is needed to suppress the output voltage change at load sudden change while attaining a high power factor and a low harmonic. In this paper, the combining method and design methods of two approximate 2-degree-of-freedom (A2DOF) controllers which simplify the overall controller and attain good robustness are proposed. The proposed controller is actually implemented on a Micro-processor and is connected to the PFC boost converter. Experimental studies demonstrate that the proposed robust controller is effective to suppress the output voltage change improving the power factor and decreasing the harmonic.
Keywords :
digital control; load regulation; microprocessor chips; nonlinear control systems; perturbation techniques; power convertors; power engineering computing; power factor correction; power system harmonics; robust control; voltage control; A2DOF controller; PFC boost converter; duty ratio; input voltage; load resistance; microprocessor; nonlinear system; output voltage change; perturbation model; power factor correction; power harmonics; robust digital controller; robustness; two approximate 2-degree-of-freedom controller; Control systems; Harmonic analysis; Power harmonic filters; Reactive power; Robustness; Transfer functions; Voltage control; Approximate 2DOF; Boost converter; Micro-processor; Power Factor Correction; Robust control;
Conference_Titel :
SICE Annual Conference (SICE), 2012 Proceedings of
Conference_Location :
Akita
Print_ISBN :
978-1-4673-2259-1