DocumentCode :
3160572
Title :
Impact of Tire Compliance Behavior to Vehicle Longitudinal Dynamics and Control
Author :
Koo, Shiang-Lung ; Tan, Han-Shue ; Tomizuka, Masayoshi
Author_Institution :
Univ. of California at Berkeley, Berkeley
fYear :
2007
fDate :
9-13 July 2007
Firstpage :
5736
Lastpage :
5741
Abstract :
Empirical tire models, generally obtained through lab tests, are commonly used in vehicle dynamics and control analysis. Most of the empirical tire models describe the linear (or nonlinear) static tire behavior and overlook the tire compliance with one exception: the relaxation length tire (RLT) model inserts first order tire dynamics. However, the RLT model creates an undamped oscillation when describing the low-speed tire dynamics. This paper presents an improved longitudinal tire model that describes the tire compliance without exhibiting the undamped vibrations. By incorporating this improved tire model into a vehicle longitudinal model, the dominant flexible modes of the vehicle can be easily captured. The predictions from the improved vehicle model show that the often-ignored tire compliance can impact longitudinal ride comfort and vehicle control designs. Experiments were conducted on a passenger car as an example and the experimental data verified the model predictions.
Keywords :
automotive components; suspensions (mechanical components); tyres; vehicle dynamics; RLT model; low-speed tire dynamics; relaxation length tire model; tire compliance behavior; tire suspension characteristics; undamped oscillation; vehicle control; vehicle longitudinal dynamics; Control design; Force control; Laboratories; Mechanical engineering; Predictive models; Road transportation; Steady-state; Testing; Tires; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 2007. ACC '07
Conference_Location :
New York, NY
ISSN :
0743-1619
Print_ISBN :
1-4244-0988-8
Electronic_ISBN :
0743-1619
Type :
conf
DOI :
10.1109/ACC.2007.4282273
Filename :
4282273
Link To Document :
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