DocumentCode
3291327
Title
Obstacle avoidance and trajectory replanification for a group of communicating vehicles
Author
Avanzini, Pierre ; Thuilot, Benoît ; Martinet, Philippe
Author_Institution
LASMEA, Aubiere, France
fYear
2009
fDate
20-22 Oct. 2009
Firstpage
267
Lastpage
272
Abstract
Various ¿Urban Transportation Systems¿ are currently in developing, in order to put forward solutions to congestion and pollution in dense areas. Autonomous electric vehicles in free-access can be seen as an attractive approach, in view of the large flexibility that can be expected. One instrumental functionality linked to this solution is platoon motion: several autonomous vehicles accurately follow a trajectory defined on a dedicated circulation lane, with pre-specified inter-distances. A global decentralized platoon control strategy, supported by inter-vehicle communications and relying on nonlinear control techniques is here proposed. In the nominal case, each vehicle is controlled with respect to the same smooth reference trajectory modelled by cubic B-Splines. This trajectory is locally modified and relayed on-line when a vehicle detects an obstacle. The trajectory distortion naturally reflects a driver´s behaviour, since it consists in approximated clothoidal trajectories and the use of B-Splines ensures consistent connections. Experimental results, carried out with several urban vehicles, demonstrate the capabilities of the proposed approach.
Keywords
automatic guided vehicles; collision avoidance; decentralised control; electric vehicles; mobile robots; nonlinear control systems; splines (mathematics); autonomous electric vehicles; clothoidal trajectories; communicating vehicles; cubic B splines; dedicated circulation lane; global decentralized platoon control strategy; inter-vehicle communications; nonlinear control techniques; obstacle avoidance; platoon motion; prespecifled interdistances; trajectory distortion; trajectory replanification; urban transportation systems; Communication system control; Electric vehicles; Instruments; Mobile robots; Pollution; Relays; Remotely operated vehicles; Spline; Transportation; Vehicle detection; automatic guided vehicles; mobile robots; nonlinear control; platooning; vehicle-to-vehicle communications;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Transport Systems Telecommunications,(ITST),2009 9th International Conference on
Conference_Location
Lille
Print_ISBN
978-1-4244-5346-7
Electronic_ISBN
978-1-4244-5347-4
Type
conf
DOI
10.1109/ITST.2009.5399345
Filename
5399345
Link To Document