2009Unpublished venueOpen access

Two–lane traffic analysis by means of cellular automata solutions within a highway model

Marcin Burzyński, Thomas Schultz, Paweł Zając, Witold Kosiński

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Abstract

A discrete model to simulate two–way traffic flow is introduced. The well known cellular automata Nagel-Schreckenberg model is extended by adding another road lane. New sets of state rules is developed to provide lane change maneuver for vehicle overtaking and returning to lane designated for slower traffic. Results of numeric simulations are consistent with the so-called fundamental diagram (flow vs. density), as is observed in the real free-way traffic.

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What this paper is about

A discrete model to simulate two–way traffic flow is introduced. The well known cellular automata Nagel-Schreckenberg model is extended by adding another road lane. New sets of state rules is developed to provide lane change maneuver for vehicle overtaking and returning to lane designated for slower traffic. Results of numeric simulations are consistent with the so-called fundamental diagram (flow vs. density), as is observed in the real free-way traffic.

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Available abstract

A discrete model to simulate two–way traffic flow is introduced. The well known cellular automata Nagel-Schreckenberg model is extended by adding another road lane. New sets of state rules is developed to provide lane change maneuver for vehicle overtaking and returning to lane designated for slower traffic. Results of numeric simulations are consistent with the so-called fundamental diagram (flow vs. density), as is observed in the real free-way traffic.

Key concepts: Overtaking, Cellular automaton, Traffic flow (computer networking), Diagram, Computer science, Flow (mathematics), Automaton, Traffic model

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