Advanced Suspension Systems for Wheeled Military Vehicles

作者: Nader Vahdati , Yap Fook Fah , Koh Yong Khiang , Kiew Woon Hwee

DOI: 10.1115/IMECE2005-82239

关键词:

摘要: To allow wheeled military vehicles to travel at higher speeds on off highway roads, the primary suspension system needs to be semi-active or fully active. To develop a semi-active or a fully active suspension system for wheeled military vehicles, instead of the actual vehicle, a simpler and a better controlled system, meaning a quarter car test rig was used. The quarter car test rig consists of a tire, a spring, a Magneto-Rheological fluid (MR-fluid) damper, a double wishbone suspension system, and a mass representing a quarter car chassis. This paper documents the quarter car test rig design, its mathematical model, its MATLAB simulation results, and experimental test results collected on the actual test rig with the damper in the OFF state versus the semi-active state. The Ground-hook semi-active control policy was used to control the MR-fluid damper. This control policy significantly reduces the motion of the tire at its natural frequency.

参考文章(9)
Dean C. Karnopp, R. Robert Rosenberg, Introduction to physical system dynamics ,(1983)
Junghsen Lieh, Semiactive and Active Suspensions for Vehicle Ride Control Using Velocity Feedback Journal of Vibration and Control. ,vol. 3, pp. 201- 212 ,(1997) , 10.1177/107754639700300204
Fernando D. Goncalves, Mehdi Ahmadian, A Hybrid Control Policy for Semi-Active Vehicle Suspensions Shock and Vibration. ,vol. 10, pp. 59- 69 ,(2003) , 10.1155/2003/897173
Michael Valášek, M Novak, Z Šika, O Vaculin, Extended Ground-Hook - New Concept of Semi-Active Control of Truck's Suspension Vehicle System Dynamics. ,vol. 27, pp. 289- 303 ,(1997) , 10.1080/00423119708969333
Yanming Liu, Faramarz Gordaninejad, Cahit A. Evrensel, Umit Dogruer, Moon-Su Yeo, Enver S. Karakas, Alan Fuchs, Temperature-dependent skyhook control of HMMWV suspension using a fail-safe magnetorheological damper Smart Structures and Materials 2003: Industrial and Commercial Applications of Smart Structures Technologies. ,vol. 5054, pp. 332- 340 ,(2003) , 10.1117/12.483887
DANIEL E. WILLIAMS, WASSIM M. HADDAD, Active suspension control to improve vehicle ride and handling Vehicle System Dynamics. ,vol. 28, pp. 1- 24 ,(1997) , 10.1080/00423119708969346
D. Karnopp, M. J. Crosby, R. A. Harwood, Vibration Control Using Semi-Active Force Generators Journal of Engineering for Industry. ,vol. 96, pp. 619- 626 ,(1974) , 10.1115/1.3438373
David Simon, Mehdi Ahmadian, Vehicle Evaluation of the Performance of Magneto Rheological Dampers for Heavy Truck Suspensions Journal of Vibration and Acoustics. ,vol. 123, pp. 365- 375 ,(2001) , 10.1115/1.1376721
Mehdi Ahmadian, Christopher A. Pare, A Quarter-Car Experimental Analysis of Alternative Semiactive Control Methods Journal of Intelligent Material Systems and Structures. ,vol. 11, pp. 604- 612 ,(2000) , 10.1106/MR3W-5D8W-0LPL-WGUQ