DocumentCode :
3530950
Title :
A new LPV/ℋ semi-active suspension control strategy with performance adaptation to roll behavior based on non linear algebraic road profile estimation
Author :
Fergani, S. ; Menhour, Lghani ; Sename, O. ; Dugard, Luc ; Novel, B. D´Andrea
Author_Institution :
Control Syst. Dept., Grenoble Univ., St. Martin d´Heres, France
fYear :
2013
fDate :
10-13 Dec. 2013
Firstpage :
3511
Lastpage :
3516
Abstract :
This paper presents a new LPV/H semi-active suspension control strategy for a commercial vehicle equipped with 4 Magneto-Rheological dampers. The proposed approach concerns road adaptation using on-line road profile identification based on a non linear algebraic observer with unknown input. Then, the suspensions forces distribution in each corner of vehicle is performed considering roll dynamics. In this LPV/H strategy, 2 varying parameters are used to model the semi-active behaviour of the MR dampers, and 2 other ones, namely, the road roughness identification and roll dynamics, are considered for the road adaptation and the full vehicle vertical dynamics control. Different ISO road classes are used to test the efficiency of the on-line non linear algebraic road profile identification. Simulations scenarios, applied on a non linear full vehicle model, are used to evaluate the LPV/H controller performances in term of passengers comfort and road holding improvement in different driving situations.
Keywords :
H control; algebra; linear systems; magnetorheology; nonlinear control systems; observers; road vehicles; shock absorbers; suspensions (mechanical components); vehicle dynamics; vibration control; H semiactive suspension control strategy; ISO road classes; LPV semiactive suspension control strategy; MR dampers; commercial vehicle; full vehicle vertical dynamics control; magnetorheological dampers; nonlinear algebraic observer; nonlinear algebraic road profile estimation; nonlinear full vehicle model; online road profile identification; passenger comfort; performance adaptation; road adaptation; road holding improvement; road roughness identification; roll behavior; roll dynamics; semiactive behaviour; unknown input; Adaptation models; Estimation; Suspensions; Vehicle safety; Vehicles; Zirconium; LPV full vehicle conrol; algebraic identification methods; algebraic observers with unknown input; road profile estimation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2013 IEEE 52nd Annual Conference on
Conference_Location :
Firenze
ISSN :
0743-1546
Print_ISBN :
978-1-4673-5714-2
Type :
conf
DOI :
10.1109/CDC.2013.6760422
Filename :
6760422
Link To Document :
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