DocumentCode :
83299
Title :
Automotive Threat Assessment Design for Combined Braking and Steering Maneuvers
Author :
Ali, Mohamed ; Gelso, E.R. ; Sjoberg, Jonas
Author_Institution :
Dept. of Active Safety & Chassis, Volvo Car Corp., Göteborg, Sweden
Volume :
62
Issue :
4
fYear :
2013
fDate :
May-13
Firstpage :
1519
Lastpage :
1526
Abstract :
The active safety systems available in passenger cars today automatically deploy automated safety interventions in situations where the driver is in need of assistance. In this paper, we consider the process of determining whether such interventions are needed. In particular, we design a threat assessment method that evaluates the risk that the vehicle will either leave the road or its maneuverability will be significantly reduced within a finite time horizon. The proposed threat assessment method accounts for combined braking and steering maneuvers, which results in a nonlinear dynamical vehicle behavior. We formulate the threat assessment problem as a nonconvex constraint satisfaction problem (CSP) and implement an algorithm that solves it through interval-based consistency techniques. Experimental validation of the proposed approach indicates that constraint violation can be predicted while avoiding the detection of false threats.
Keywords :
automobiles; braking; concave programming; constraint satisfaction problems; infinite horizon; nonlinear dynamical systems; risk analysis; safety systems; steering systems; CSP; active safety system; automated safety intervention; automotive threat assessment design; braking; constraint violation; driver assistance; false threat detection; finite time horizon; interval-based consistency technique; maneuverability; nonconvex constraint satisfaction problem; nonlinear dynamical vehicle behavior; passenger car; steering maneuver; threat assessment method; threat assessment problem; vehicle risk evaluation; Accuracy; Approximation methods; Force; Roads; Safety; Tires; Vehicles; Actives safety; interval techniques; threat assessment;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2012.2231444
Filename :
6373748
Link To Document :
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