DocumentCode
189211
Title
Continuous-Time Switched H∞ Proportional-Integral observer: Application for sideslip and road bank angles estimation
Author
Menhour, Lghani ; Koenig, D. ; d´Andrea-Novel, Brigitte
Author_Institution
Centre de Rech. STIC, IUT de Troyes, Troyes, France
fYear
2014
fDate
24-27 June 2014
Firstpage
2358
Lastpage
2363
Abstract
In this work, a Continuous-Time Switched H∞ Proportional-Integral (CTSH∞PI) observer is presented. The estimation method is based on a proportional-integral observer introduced by [13], [11], [12]. The estimation method is used to estimate simultaneously the state variables and unknown inputs of switched systems. A design method is established using a common Lyapunov function and H∞ norm. Its stability and global convergence conditions are proved and expressed in term of LMIs. All conditions are established under given switching signals. The estimation method is applied in vehicle dynamics to estimate simultaneously the vehicle sideslip angle and road bank angle. Moreover, the switching signal is deduced from measured premise variables. Simulation tests with experimental data are included to demonstrate the advantage of this method.
Keywords
H∞ control; Lyapunov methods; PI control; continuous time systems; control system synthesis; convergence; linear matrix inequalities; observers; road vehicles; stability; state estimation; time-varying systems; vehicle dynamics; CTSH∞PI observer; H∞ norm; LMIs; Lyapunov function; continuous-time switched H∞ proportional-integral observer; global convergence conditions; road bank angle estimation method; sideslip estimation method; simulation tests; stability; state variable estimation; switched systems; switching signals; vehicle dynamics; Observers; Roads; Stability analysis; Switched systems; Switches; Vehicles; H∞ -filtering; LMI; Switched PI observer; Switched systems; stability; vehicle application;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (ECC), 2014 European
Conference_Location
Strasbourg
Print_ISBN
978-3-9524269-1-3
Type
conf
DOI
10.1109/ECC.2014.6862402
Filename
6862402
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