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Structure and dynamics in the low-density phase of a two-dimensional cellular automaton model of traffic flow
Gilad Hertzberg Rabinovich1, Ofer Biham1, Eytan Katzav1
1The Hebrew University, Racah Institute of Physics, Jerusalem 9190401, Israel.
Abstract:
We analyze the structure and dynamics in the low-density phase of the deterministic two-dimensional cellular automaton model of traffic flow introduced in [O. Biham, A.A. Middleton, and D. Levine, Phys. Rev. A 46, R6124(R) (1992)10.1103/PhysRevA.46.R6124]. The model consists of horizontally oriented (H) cars that move to the right and vertically oriented (V) cars that move downward, on a square lattice of size L with periodic boundary conditions. Starting from a random initial state of density p, which is equally divided between the H- and V-cars, the model exhibits a phase transition at a critical density p_{c}. For p
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