DocumentCode
1768098
Title
Shunt active power filter based on a novel sliding mode backstepping control for three-phase three-wire system
Author
Lihua Deng ; Juntao Fei ; Changchun Cai
Author_Institution
Coll. of IOT Eng., Hohai Univ., Changzhou, China
fYear
2014
fDate
22-25 Oct. 2014
Firstpage
1146
Lastpage
1151
Abstract
This paper presents a global fast terminal sliding mode (GFTSM) control based on backstepping design for active power filter(APF). Power system is a typical nonlinear system. Its mathematic model can be reduced order by backstepping method. Power system is decomposed into low-level subsystems until finalizing the design of the control law. The System´s stability is ensured by Lyapunov framework. The sliding mode control is added into backstepping control to expand the application scope of control. The sliding mode control doesn´t need accurate model of system. Therefore robustness of APF control is improved. Global fast terminal control is added into sliding mode control. The nonlinear term of GFTSM control makes the system converge quickly when far from equilibrium point, and the linear term do when near equilibrium point. It makes the system´s state tracking error reach zero in finite time. The control speed of system is enhanced. An experiment based on MATLAB/SIMULINK is designed to compare GFTSM backstepping control with pure backstepping control, and experimental results confirm the validity of proposed APF controller for a three-phase three-wire system.
Keywords
Lyapunov methods; active filters; control nonlinearities; control system synthesis; nonlinear control systems; power filters; power system control; stability; variable structure systems; wires (electric); APF control; GFTSM backstepping control; GFTSM control; Lyapunov framework; MATLAB/SIMULINK; backstepping design; control law design; global fast terminal sliding mode control; low-level subsystems; mathematic model; nonlinear system; nonlinear term; power system; robustness; shunt active power filter; sliding mode backstepping control; state tracking error; system stability; three-phase three-wire system; Backstepping; Equations; Harmonic analysis; Hip; Inductance; Active power filter(APF); Lyapunov framework; backstepping; global fast terminal sliding mode (GFTSM); sliding mode control; total harmonic distortion (THD);
fLanguage
English
Publisher
ieee
Conference_Titel
Control, Automation and Systems (ICCAS), 2014 14th International Conference on
Conference_Location
Seoul
ISSN
2093-7121
Print_ISBN
978-8-9932-1506-9
Type
conf
DOI
10.1109/ICCAS.2014.6987552
Filename
6987552
Link To Document