DocumentCode
1727656
Title
On the optimal design of a vehicle lateral controller
Author
Selim, Ibrahim ; Fenton, Robert E.
Author_Institution
Ohio State University, Columbus, Ohio
Volume
34
fYear
1984
Firstpage
291
Lastpage
298
Abstract
An optimization approach is used to design a velocity-adaptive, lateral controller to meet requirements pertaining to lateral-position tracking accuracy, robustness, and ride comfort. The resulting nonlinear controller required full-state feedback and thus an observer, which was nonlinear with velocity, was included. The observer/controller compensator was implemented using a 16-bit microcomputer and evaluated in a laboratory study wherein vehicle lateral dynamics were simulated on an analog computer. Excellent lateral control -- close tracking |lateral-position error| < 0.024 m in curve tracking), a good insensitivity to disturbance forces and probable ride comfort -- resulted. The selected control algorithm was realized using some 5% of the available computation time. Thus the microcomputer could also be employed for other control functions and vital-function monitoring.
Keywords
Computational modeling; Computer simulation; Design optimization; Laboratories; Microcomputers; Optimal control; Robust control; State feedback; Vehicle dynamics; Velocity control;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference, 1984. 34th IEEE
Type
conf
DOI
10.1109/VTC.1984.1623278
Filename
1623278
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