Title :
Automatic and efficient driving strategies while approaching a traffic light
Author :
Treiber, Martin ; Kesting, Arne
Author_Institution :
Dept. of Transp. & Traffic Sci., Tech. Univ. Dresden, Dresden, Germany
Abstract :
Vehicle-infrastructure communication opens up new ways to improve traffic flow efficiency at signalized intersections. In this study, we assume that equipped vehicles can obtain information about switching times of relevant traffic lights in advance. This information is used to improve traffic flow by the strategies “early braking”, “anticipative start”, and “flying start”. The strategies can be implemented in driver-information mode, or in automatic mode by an Adaptive Cruise Controller (ACC). Quality criteria include cycle-averaged capacity, driving comfort, fuel consumption, travel time, and the number of stops. By means of simulation, we investigate the isolated strategies and the complex interactions between the strategies and between equipped and non-equipped vehicles. As universal approach to assess equipment level effects we propose relative performance indexes and found, at a maximum speed of 50 km/h, improvements of about 15% for the number of stops and about 4% for the other criteria. All figures double when increasing the maximum speed to 70 km/h.
Keywords :
adaptive control; intelligent transportation systems; motion control; performance index; road traffic control; road vehicles; signalling; velocity control; ACC; adaptive cruise controller; anticipative start strategies; automatic driving strategies; cycle-averaged capacity; driver-information mode; driving comfort; early braking strategies; equipment level effects assessment; flying start strategies; fuel consumption; maximum speed; nonequipped vehicles; performance indexes; quality criteria; signalized intersections; switching times; traffic flow efficiency; traffic light; traffic stops; travel time; vehicle-infrastructure communication; Acceleration; Engines; Fuels; Mathematical model; Spatiotemporal phenomena; Trajectory; Vehicles;
Conference_Titel :
Intelligent Transportation Systems (ITSC), 2014 IEEE 17th International Conference on
Conference_Location :
Qingdao
DOI :
10.1109/ITSC.2014.6957838