Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 2002 · 64 citations · 28 references
Mathematical ProgrammingTraffic TheoryEngineeringGame TheoryVehicle DynamicVariational PrincipleCurrent AccelerationIntelligent SystemsCalculus Of VariationIndividual Car MotionSystems EngineeringRobot LearningDecision TheoryTransportation EngineeringMechanism DesignLagrangian MethodMicroscopic EquationsAutonomous DrivingBusinessTraffic ModelRoad Traffic ControlTraffic Management
We deal with the problem of deriving the microscopic equations governing individual car motion based on assumptions about the strategy of driver behavior. We presume the driver behavior to be a result of a certain compromise between the will to move at a speed that is comfortable for him under the surrounding external conditions, comprising the physical state of the road, the weather conditions, etc., and the necessity to keep a safe headway distance between the cars in front of him. Such a strategy implies that a driver can compare the possible ways of further motion and so choose the best one. To describe the driver preferences, we introduce the priority functional whose extremals specify the driver choice. For simplicity we consider a single-lane road. In this case solving the corresponding equations for the extremals we find the relationship between the current acceleration, velocity, and position of the car. As a special case we get a certain generalization of the optimal velocity model similar to the "intelligent driver model" proposed by Treiber and Helbing.
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Field Theory in Social Science
R. L. French, Kurt Lewin, Dorwin Cartwright · The American Journal of Psychology · 1953 · 5.2K citations
Traffic and related self-driven many-particle systems
Dirk Helbing · Reviews of Modern Physics · 2001 · 3.2K citations · Full text
Statistical physics of vehicular traffic and some related systems
Physics Reports · 2000 · 2.2K citations · Full text