An Improved Cellular Automaton Model for Traffic Flow
Gao Hebei
Abstract
Gao Hebei
Abstract
A cellular automaton model for traffic flow with crossings controlled by traffic-polices is proposed. The simulations reveal that there are qualitative distinguishes between traffic flow models with and without polices. In the cellular automaton models with traffic-polices, the free flow phase occurs at a much lower car density, and the characteristic of the first-order transition disappears, and two second-order transitions come forth, and jamming phase moves towards higher concentrations, and thus traffic performances are dramatically improved. It is shown that the traffic flow model with traffic-polices conforms with the realistic traffic.
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A cellular automaton model for traffic flow with crossings controlled by traffic-polices is proposed. The simulations reveal that there are qualitative distinguishes between traffic flow models with and without polices. In the cellular automaton models with traffic-polices, the free flow phase occurs at a much lower car density, and the characteristic of the first-order transition disappears, and two second-order transitions come forth, and jamming phase moves towards higher concentrations, and thus traffic performances are dramatically improved. It is shown that the traffic flow model with traffic-polices conforms with the realistic traffic.
Key concepts: Cellular automaton, Jamming, Microscopic traffic flow model, Traffic flow (computer networking), Computer science, Traffic generation model, Automaton, Flow (mathematics)