DocumentCode :
2676770
Title :
Adaptive fault tolerant control for actuator bias of nonlinear systems
Author :
Kang, Haobo ; Ma, Hongjun ; Yang, Guanghong
Author_Institution :
Coll. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
fYear :
2012
fDate :
23-25 May 2012
Firstpage :
4227
Lastpage :
4232
Abstract :
This paper deals with active fault tolerant controller design against time-varying actuator fault, aiming to improve the robustness, sensitivity of fault detection and the rapidity of whole diagnosis and compensation procedure. A high-gain observer technique is developed to design a residual signal with the estimation error of system states and the derivatives of system output. Then a reconfiguration controller is directly constructed based on the fault information from diagnosis procedure. A qualitative relation is derived to connect the robustness, rapidity and sensitivity of the proposed fault diagnosis scheme with the observe parameters. By prescribing the observer/controller parameters, the set of detectable faults, the time of detection and compensation and the bound of the closed-system signals are quantified. Finally, the theoretical results are illustrated by a simulation example of surface-mounted permanent magnet synchronous motors (PMSM).
Keywords :
actuators; adaptive control; compensation; control system synthesis; fault diagnosis; fault tolerance; machine control; nonlinear control systems; observers; permanent magnet motors; robust control; sensitivity analysis; synchronous motors; PMSM; active fault tolerant controller design; adaptive fault tolerant control; closed-system signal bound; compensation rapidity; controller parameters; detectable faults; diagnosis rapidity; fault detection sensitivity; fault information; high-gain observer technique; nonlinear systems; observer parameters; reconfiguration controller; robustness improvement; surface-mounted permanent magnet synchronous motors; system output derivatives; system state estimation error; time-varying actuator fault; Actuators; Fault detection; Fault diagnosis; Fault tolerance; Mathematical model; Observers; Robustness; Nonlinear system; accommodation; actuator bias; detection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Decision Conference (CCDC), 2012 24th Chinese
Conference_Location :
Taiyuan
Print_ISBN :
978-1-4577-2073-4
Type :
conf
DOI :
10.1109/CCDC.2012.6244676
Filename :
6244676
Link To Document :
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