Transportation Research Record Journal of the Transportation Research Board · 1998 · 59 citations · 9 references
Automotive EngineeringVehicle Dynamics (Space Vehicle Dynamics)EngineeringTraffic FlowVehicle ControlTransportation Systems ModelingVehicle DynamicSimulationIntelligent SystemsStochastic SimulationSystems EngineeringModeling And SimulationKinematicsTraffic SimulationTransportation EngineeringContinuous Acceleration ProfilesVehicle Dynamics (Mechanical Engineering)Aerospace EngineeringTraffic ModelBrake Reaction Times
A linear acceleration car-following model has been developed for realistic simulation of traffic flow in intelligent transportation systems (ITS) applications. The new model provides continuous acceleration profiles instead of the stepwise profiles that are currently used. The brake reaction times of the drivers are simulated effectively and are independent of the simulation time steps. Chain-reaction times of the drivers are also simulated and perception thresholds are incorporated in the model. The preferred time headways are utilized to determine the simulated drivers’ separation during car-following. The features of the model and the realistic vehicle simulation in car-following and in stop-and-go conditions make this model suitable to ITS, especially to autonomous intelligent cruise-control systems. The car-following algorithm is validated at microscopic and macroscopic levels by using field data. Simulated versus field trajectories and statistical tests show very strong agreement between simulation results and field data.
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Transportation Research Record
Anne Vingaard Olesen, Erik Kjems, Kristian Hegner Reinau et al. · 2016 · 11.4K citations
Nonlinear Follow-the-Leader Models of Traffic Flow
Denos C. Gazis, Robert K Herman, Richard Rothery · Operations Research · 1961 · 1.5K citations
BREAK REACTION TIMES OF UNALERTED DRIVERS
G T Taoka · ITE journal · 1989 · 109 citations