DocumentCode
630747
Title
Unfalsified uncertainty modeling for computing tight bounds on peak spacing errors in vehicle platoons
Author
Rodonyi, Gabor ; Gaspar, Peter ; Bokor, Jozsef
Author_Institution
Syst. & Control Lab., Comput. & Autom. Res. Inst., Budapest, Hungary
fYear
2013
fDate
17-19 June 2013
Firstpage
3057
Lastpage
3062
Abstract
A joint uncertainty modeling and robust performance analysis method is proposed for describing brake/driveline actuator uncertainties in heavy vehicles and calculating tight upper bounds on peak spacing errors due to these uncertainties in autonomous vehicle platoons. Evaluation of robust performance of the platoon in terms of peak-to-peak norm is imperative in determining minimal safety gaps. The method can be characterized as a constrained nonlinear optimization problem that can be efficiently solved by pattern search algorithms. Actuator uncertainties are modeled by filtered ℓ∞ disturbances. The set of consistent filters are determined from experimental data based on unfalsification. From this set of filters the one is selected that provides the smallest upper bounds on peak spacing errors. Calculations based on experimental data are presented.
Keywords
actuators; brakes; mobile robots; nonlinear programming; road safety; road vehicles; robust control; search problems; autonomous vehicle platoon; brake actuator uncertainty; consistent filters; constrained nonlinear optimization problem; driveline actuator uncertainty; filtered ℓ∞ disturbances; joint uncertainty modeling; minimal safety gaps; pattern search algorithm; peak spacing error; peak-to-peak norm; robust performance analysis method; tight bounds; unfalsified uncertainty modeling; Acceleration; Actuators; Computational modeling; Data models; Gears; Uncertainty; Vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference (ACC), 2013
Conference_Location
Washington, DC
ISSN
0743-1619
Print_ISBN
978-1-4799-0177-7
Type
conf
DOI
10.1109/ACC.2013.6580300
Filename
6580300
Link To Document