DocumentCode
3470038
Title
Vehicle Lateral Stability Control Based on Sliding Mode Control
Author
Zhao, Shuen ; Li, Yinong ; Zheng, Ling ; Lu, Shaobo
Author_Institution
Univ. of Chongqing, Chongqing
fYear
2007
fDate
18-21 Aug. 2007
Firstpage
638
Lastpage
642
Abstract
In view of the vehicle cornering or path changing under ultimate handling maneuver, a 4-DOF nonlinear vehicle dynamics model which takes the longitudinal velocity, lateral velocity, yaw rate and body roll angle as the state variables is presented. Based on the dynamic analysis, the method which using additional yaw moment produced by different longitudinal braking force among each wheels to improving vehicle handling stability in emergency situations is discussed. Considering the slip angle of the centroid as the one of the vehicle state variables is difficult to measuring, the slip angle estimation method based on vehicle dynamic model and kinematics is designed. And then, based on the theory of sliding model control, the combining sliding mode control system is founded, which taking the vehicle yaw rate and body centroid slip angle errors between the estimated and the real as the input variables, and taking the braking torque and the steering angle as control aims. The simulation results indicate that the control method can effectively improve the vehicle lateral handling stability.
Keywords
stability; steering systems; variable structure systems; vehicles; velocity control; additional yaw moment; body centroid slip angle errors; dynamic analysis; kinematics; lateral velocity; longitudinal braking force; longitudinal velocity; nonlinear vehicle dynamics model; path changing; sliding mode control; slip angle estimation; steering angle; ultimate handling maneuver; vehicle dynamic model; vehicle handling stability; vehicle lateral handling stability; vehicle lateral stability control; vehicle state variables; Error correction; Goniometers; Input variables; Kinematics; Sliding mode control; Stability analysis; State estimation; Torque control; Vehicle dynamics; Wheels; Sideslip angle estimation; Simulation; Sliding mode control; Vehicle dynamics stability;
fLanguage
English
Publisher
ieee
Conference_Titel
Automation and Logistics, 2007 IEEE International Conference on
Conference_Location
Jinan
Print_ISBN
978-1-4244-1531-1
Type
conf
DOI
10.1109/ICAL.2007.4338642
Filename
4338642
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