Title :
Vehicle routing through deadlock-free policy for cooperative traffic control in a network of intersections: Reservation and congestion
Author :
Perronnet, Florent ; Abbas-Turki, Abdeljalil ; El Moudni, Abdellah
Author_Institution :
Le Lab. IRTES-SET (Syst. et Transp.), Univ. de Technol. de Belfort-Montbeliard, Belfort, France
Abstract :
This paper considers a network of intersections, traversed by autonomous vehicles. Vehicles negotiate the right-of-way before traversing each intersection. The cooperative traffic management at intersections allows high traffic performance at a single intersection. This paper extends the issue of the traffic control efficiency to a network of intersections. It proposes a hierarchical architecture of the traffic control for preventing traffic from deadlock into a grid of intersections. Then, it discusses policies for routing vehicles in the network. Three policies are considered: shortest path, reservation and congestion avoidance. Furthermore, three traffic contexts are considered and simulated. Since, the traffic management at intersections is adapted to the currently observed vehicles, then the simulation shows that it is required to define new policy that considers the overall network performance rather than optimizing the route of each vehicle according to a given criteria. Indeed, reorienting vehicles according to a given policy can increase the number of conflicts and risks of cycles.
Keywords :
network theory (graphs); road traffic control; vehicle routing; autonomous vehicles; cooperative traffic control; cooperative traffic management; deadlock-free policy; high traffic performance; intersection grid; intersection network; network performance; right-of-way; traffic control efficiency; vehicle routing; Global Positioning System; Performance evaluation; Radio frequency; Real-time systems; Vehicles;
Conference_Titel :
Intelligent Transportation Systems (ITSC), 2014 IEEE 17th International Conference on
Conference_Location :
Qingdao
DOI :
10.1109/ITSC.2014.6958034