Backstepping control of a vehicle with active suspensions

Control Engineering Practice - Tập 16 Số 12 - Trang 1457-1467 - 2008
Nurkan Yağiz1, Yüksel Hacioğlu1
1Department of Mechanical Engineering, Faculty of Engineering, Istanbul University, 34320 Avcilar, Istanbul, Turkey

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Ahmadian, 2000, A quarter-car experimental analysis of alternative semiactive control methods, Journal of Intelligent Material Systems and Structures, 11, 604, 10.1106/MR3W-5D8W-0LPL-WGUQ

Choi, 2003, H∞ control of electrorheological suspension system subjected to parameter uncertainties, Mechatronics, 13, 639, 10.1016/S0957-4158(02)00035-1

Du, 2005, Design of non-fragile H∞ controller for active vehicle suspensions, Journal of Vibration and Control, 11, 225, 10.1177/1077546305049392

Ertugrul, M., Kaynak, O., & Sabanovic, A. (1995, July 10–14). A comparison of various vss techniques on the control of automated guided vehicles. In Proceedings of the IEEE international symposium on industrial electronics (pp. 837–842). Athens, Greece.

Fischer, 2004, Mechatronic semi-active and active vehicle suspensions, Control Engineering Practice, 12, 1353, 10.1016/j.conengprac.2003.08.003

Fischer, 2007, Fault detection for lateral and vertical vehicle dynamics, Control Engineering Practice, 15, 315, 10.1016/j.conengprac.2006.05.007

Guclu, 2004, Comparison of different control strategies on a vehicle using sliding mode control, Iranian Journal of Science & Technology, Transaction B, 28, 413

Hrovat, 1997, Survey of advanced suspension developments and related optimal control applications, Automatica, 33, 1781, 10.1016/S0005-1098(97)00101-5

Isermann, 2008, Mechatronic systems–innovative products with embedded control, Control Engineering Practice, 16, 14, 10.1016/j.conengprac.2007.03.010

Kaddissi, C., Kenne, J. P., & Saad, M. (2005, August 28–31). Drive by wire control of an electro-hydraulic active suspension a backstepping approach. In Proceedings of the 2005 IEEE conference on control applications (pp. 1581–1587). Toronto, Canada..

Karlsson, N. (2002). Constructive methods for nonlinear control of finite and infinite dimensional systems. Ph.D. thesis, University of California, Santa Barbara.

Karlsson, N., Teel, A., & Hrovat, D. (2001, December). A backstepping approach to control of active suspensions. In Proceedings of the 40th IEEE conference on decision and control (pp. 4170–4175). Orlando, FL, USA.

Kim, 1998, A sliding mode controller for vehicle active suspension systems with non-linearities, Proceedings of the I MECH E Part D Journal of Automobile Engineering, 212, 79, 10.1243/0954407981525812

Kim, 1999, Vibration suppression in an MR fluid damper suspension system, Journal of Intelligent Material Systems and Structures, 10, 779, 10.1106/1GRU-NNUA-8HJL-2V94

Krstic, 1995

Kuo, 1999, GA-based fuzzy PI/PD controller for automotive active suspension system, IEEE Transactions on Industrial Electronics, 46, 1051, 10.1109/41.807984

Lai, 2002, Vibration control of a suspension system via a magnetorheological fluid damper, Journal of Vibration and Control, 8, 527, 10.1177/107754602023712

Lin, 2004, Nonlinear backstepping active suspension design applied to a half-car model, Vehicle System Dynamics, 42, 373, 10.1080/0042311042000266784

Lin, 1997, Nonlinear design of active suspensions, IEEE Control Systems Magazine, 17, 45, 10.1109/37.588129

Taskin, 2007, The use of fuzzy-logic control to improve the ride comfort of vehicles, Strojniski Vestnik-Journal of Mechanical Engineering, 53, 233

Utkin, 1999

Yagiz, 2005, Robust sliding mode control of a full vehicle without suspension gap loss, Journal of Vibration and Control, 11, 1357, 10.1177/1077546305058268