DocumentCode
66832
Title
Robust static output-feedback controller design against sensor failure for vehicle dynamics
Author
Aouaouda, Sabrina ; Chadli, M. ; Karimi, Hamid-Reza
Author_Institution
LEER Lab., Univ. of Souk Ahras, Souk Ahras, Algeria
Volume
8
Issue
9
fYear
2014
fDate
June 12 2014
Firstpage
728
Lastpage
737
Abstract
This study deals with the design of a robust fault estimation and fault-tolerant control for vehicle lateral dynamics subject to external disturbance and unknown sensor faults. Firstly, a descriptor state and fault observer is designed to achieve the system state and sensor fault estimates simultaneously. Secondly, based on the information of on-line fault estimates, a robust fault-tolerant controller based on static output-feedback controller (SOFC) design approach is developed. To provide linear matrix inequalities of less conservatism, the results are conducted in the non-quadratic framework dealing with unmeasurable premise variables case. Simulation results show the effectiveness of the proposed control approach when the vehicle road adhesion conditions change and the sideslip angle is unavailable for measurement.
Keywords
control system synthesis; fault tolerant control; feedback; linear matrix inequalities; observers; robust control; sensors; vehicle dynamics; SOFC design; descriptor state; fault observer; fault-tolerant control; linear matrix inequalities; robust fault estimation; robust static output feedback controller design; sensor failure; vehicle dynamics;
fLanguage
English
Journal_Title
Control Theory & Applications, IET
Publisher
iet
ISSN
1751-8644
Type
jour
DOI
10.1049/iet-cta.2013.0709
Filename
6842525
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