Title :
Improving Vehicle Lateral Stability Based on Variable Stiffness and Damping Suspension System via MR Damper
Author :
Yanhai Xu ; Ahmadian, Mohammad ; Renyun Sun
Author_Institution :
Sch. of Automotive Eng., Xi Hua Univ., Chengdu, China
Abstract :
The capability of a variable stiffness and damping (VSVD) suspension system via a magnetorheological (MR) damper on improving vehicle lateral stability is investigated in this paper. First, a type of the VSVD suspension system is briefly introduced with the application of variable damping to realize the capability of VSVD. Then, variable damping via the MR damper is extended, and the characteristics of damping force are presented with the Bouc-Wen model. Then, the proposed VSVD system is inserted into a full vehicle model as a front suspension system to control tire normal forces. A control strategy composed of a fuzzy controller that the output is wheel slip ratio and a simple on/off controller to model the application of VSVD is developed to illustrate its ability in improving vehicle stability. It is shown from simulation that VSVD can increase tire normal forces and make vehicles present better performance on lateral stability.
Keywords :
damping; elasticity; fuzzy control; mechanical stability; shock absorbers; vehicle dynamics; vibration control; Bouc-Wen model; MR damper; VSVD suspension system; fuzzy controller; magnetorheological damper; tire normal forces; variable stiffness damping suspension system; vehicle lateral stability; Axles; Damping; Force; Shock absorbers; Tires; Vehicles; Bouc–Wen model; magnetorheological (MR) damper; tire normal force; variable stiffness and damping (VSVD); vehicle lateral stability;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2013.2282824