A Glimpse inside the Black Box Network Micro-simulation .ppt
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1、A Glimpse inside the Black Box Network Micro-simulation Models,Ronghui Liu Institute for Transport Studies University of Leeds, UK r.liuleeds.ac.uk,2,Contents,Introduction Individual model components Practical implementations Summary,3,Introduction to micro-simulation,“A numerical technique for cond
2、ucting experiments on a digital computer, which may involve mathematical models that describe the behaviour of a transportation system over extended periods of time.” (May 1990),4,Keywords:,System: the real-world process to imitate; Model: the set of assumptions, in the form of mathematical or logic
3、al relationships, put forward to help understand how the corresponding system behaves; Entities: people or vehicles that act in the system; Time: an explicit element of the system.,5,The transport road network systems,Demand for travel: activity-based trip chains and trip timing Route choice (pre-tr
4、ip and en-route) Departure-time choice Traffic movements Public transport (bus) systems,6,Interaction of the model systems:,7,Micro-simulation models of route choice,Bounded rational model Stay on the same habit route unless the alternative is well better (Mahmassani et al) Probabilistic discrete ch
5、oice From individual perceived costs on alternative routes Myopic switch Always takes the minimum cost route,8,Models of departure-time choice,Preferred arrival time (Small 1982) Probability distributions of inter-departure headways based on average flows of a given demand profile,9,Traffic micro-si
6、mulation entities,Driver and vehicle characteristics. Physical size: length and width Mechanical capacity: maximum acceleration or deceleration Driving behaviour: desired speed, reaction time, gap acceptance, aggressiveness, etc.,10,Traffic micro-simulation models,Car-following model Lane-changing m
7、odel Gap-acceptance model Lane-choice model Models of intersection controls,11,Car-following models,Models of individual vehicle following behaviour In a single stream of traffic (lane disciplined) No overtaking Three main types: Safety-distance model “Action-points”: different rules for different d
8、riving states Psycho-physical: Acceleration=Stimulus x Sensitivity,12,Model requirements,Agree with experimental evidence Microscopic: individual vehicle trajectories Macroscopic: q-k-u relationships Be psycho-physically feasible Posses local stability Perturbations in behaviour of lead vehicle not
9、causing following vehicle to collide Possess asymptotic stability Perturbations not magnified back over a line of vehicles,13,The Gipps car-following model,Free flow model Accelerate freely to desired speedSafety-distance model Driver maintains a speed v which will just allow him to stop in emergenc
10、y without hitting the obstacle at distance S ahead,14,Variants and constraints,Variable reaction times Variable acceleration and deceleration Variable or multiple lead vehiclesLane-disciplined Stable traffic flow: do not produce incidents,15,Gap-acceptance models,Models of individual drivers choice
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