DocumentCode :
1550663
Title :
A new strategy for traction control in turning via engine modeling
Author :
Kabganian, Mansour ; Kazemi, Reza
Author_Institution :
Syst. Dynamics & Control Res. Lab., Amir Kabir Univ., Tehran, Iran
Volume :
50
Issue :
6
fYear :
2001
fDate :
11/1/2001 12:00:00 AM
Firstpage :
1540
Lastpage :
1548
Abstract :
The driving stability is affected by driven wheel slip, which can be controlled by the driven wheel torque. In a vehicle powered by an internal combustion engine, the torque can be controlled by an engine management system. The sliding mode algorithm is the mechanism behind the design of the traction control system (TCS). The longitudinal slip is controlled by the position of the throttle valve. The vehicle model used has seven degrees of freedom and a two-state engine model, i.e., the mass of air in the intake manifold and the engine speed. Time-delay transport is considered in the engine model used. A nonlinear tire model for combined slip is used for tire force computation. Due to the nonlinear dynamic of the tire, vehicle, and engine, the control method of sliding mode is used for its robustness. A controller is designed based on the dynamic surface control, for which two first-order surfaces are defined. The effectiveness of the controller is demonstrated with simulation results for different maneuvers. Results show that for different road conditions, the acceleration performance, directional stability, and steerability of a vehicle equipped with TCS is improved. The reason is that the slip is controlled by keeping it in a desired range
Keywords :
automobiles; dynamics; friction; mechanical variables control; variable structure systems; automobile; dynamic surface control; dynamics; internal combustion engine; longitudinal slip; nonlinear tire model; sliding mode; traction control system; Control systems; Internal combustion engines; Power system modeling; Sliding mode control; Stability; Tires; Torque control; Turning; Vehicles; Wheels;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/25.966584
Filename :
966584
Link To Document :
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