Gazis, D. C., Herman, R., & Rothery, W. R. (1961).
Nonlinear follow-the-leader models of traffic
flow. Operations Research, 9(4), 545–567.
https://doi.org/10.1287/opre.9.4.545
.Greenshields, B. D., Bibbins, J. R., Channing, W. S., &
Miller, H. H. (1935). A study of traffic capacity.
In Proceedings of the 14th Annual Meeting of
the Highway Research Board, (pp. 448–477).
Washington D.C., USA: The National Academy
of Science, Engineering, and Medicine.
Greenshields, B. D., Thompson, J. T., Dickinson, H. C.,
& Swinton, R. S. (1934). The photographic
method of studying traffic behavior. In
Proceedings of the 13th Annual Meeting of the
Highway Research Board (pp. 382–399).
Washington D.C., USA: The National Academy
of Science, Engineering, and Medicine
Guzmán, H. A., Lárraga, M. E., Alvarez-Icaza, L., &
Carvajal, J. (2018). A cellular automata model
for traffic flow based on kinetics theory,
vehicles capabilities and driver reactions.
Physica A: Statistical Mechanics and Its
Applications, 491, 528–548.
https://doi.org/10.1016/j.physa.2017.09.094
Hedlund, G. A. (1969). Endomorphisms and
automorphisms of the shift dynamical system.
Math. Systems Theory, 3(4), 320–375.
https://doi.org/https://doi.org/10.1007/BF016
91062
Jia, B., Jiang, R., Wu, Q., & Hu, M. (2005). Honk effect
in the two-lane cellular automaton model for
traffic flow. Physica A: Statistical Mechanics
and Its Applications, 348, 544–552.
https://doi.org/10.1016/j.physa.2004.09.034
Lárraga, M. E., & Alvarez-Icaza, L. (2010). A Cellular
Automaton Model for Traffic Flow with Safe
Driving Policies. Journal of Cellular
Automata, 5(6), 421-429.
Li, X., Jia, B., Gao, Z., & Jiang, R. (2006). A realistic
two-lane cellular automata traffic model
considering aggressive lane-changing
behavior of fast vehicle. Physica A: Statistical
Mechanics and Its Applications, 367, 479–
476.
https://doi.org/10.1016/j.physa.2005.11.016
Maerivoet, S., & De Moor, B. (2005). Cellular automata
models of road traffic. Physics Reports,
419(1), 1–64.
https://doi.org/10.1016/j.physrep.2005.08.005
Maglaras, L., Al-Bayatti, A., He, Y., Wagner, I., &
Janicke, H. (2016). Social Internet of Vehicles
for Smart Cities. Journal of Sensor and
Actuator Networks, 5(1), 1-22.
https://doi.org/10.3390/jsan5010003
Mallikarjuna, C., & Rao, K. R. (2011). Heterogeneous
traffic flow modelling: a complete
methodology. Transportmetrica, 7(5), 321–
345.
https://doi.org/10.1080/18128601003706078
Meng, J., Dai, S., Dong, L., & Zhang, J. (2007). Cellular
automaton model for mixed traffic flow with
motorcycles. Physica A: Statistical Mechanics
and Its Applications, 380, 470–480.
https://doi.org/10.1016/j.physa.2007.02.091
Nagel, K. (1994). Life times of simulated traffic jams.
International Journal of Modern Physics C,
05(03), 567–580.
https://doi.org/10.1142/S012918319400074X
Nagel, K., & Schreckenberg, M. (1992). A cellular
automaton model for freeway traffic. Journal
de Physique I, 2(12), 2221–2229.
https://doi.org/10.1051/jp1:1992277
Nagel, K., Wolf, D. E., Wagner, P., & Simon, P. (1998).
Two-lane traffic rules for cellular automata: A
systematic approach. Physical Review E,
58(2), 1425–1437.
https://doi.org/10.1103/PhysRevE.58.1425
Nassab, K., Schreckenberg, M., Ouaskit, S., &
Boulmakoul, A. (2005). Impacts of different
types of ramps on the traffic flow. Physica A:
Statistical Mechanics and its Applications,
354(2–4), 601–611.
https://doi.org/10.1016/j.physa.2004.11.044
Pandey, G., Rao, K. R., & Mohan, D. (2015). A review
of cellular automata model for heterogeneous
traffic conditions. In M. Chraibi, M. Boltes, A.
Schadschneider & A. Seyfried (Eds.), Traffic
and Granular Flow'13 (pp. 471–478).
https://doi.org/10.1007/978-3-319-10629-
8_52
Rawat, K., Katiyar, V. K., & Gupta, P. (2012). Two-
Lane Traffic Flow Simulation Model via
Cellular Automaton. International Journal of
Vehicular Technology, 2012, 1–6.
https://doi.org/10.1155/2012/130398
Reis, L. G. (2008). Produção de monografias: da teoria
à pratica o método educar pela pesquisa
(MEP)(2nd ed.). Brasilia, Brasil: SENAC.
Rickert, M., Nagel, K., Schreckenberg, M., & Latour, A.
(1996). Two lane traffic simulations using
cellular automata. Physica A: Statistical
Mechanics and Its Applications, 231(4), 534–
550. https://doi.org/10.1016/0378-
4371(95)00442-4
Romero, N. (2012). Dinámica Topológica y Autómata
Celulares: conceptos y propiedades
fundamentales. Germany: Editorial
Académica Española.
Schadschneider, A. (1999). The Nagel-Schreckenberg
model revisited. The European Physical
Journal B, 10(3), 573–582.
https://doi.org/10.1007/s100510050888
Schadschneider, A. (2002). Traffic flow: a statistical
physics point of view. Physica A: Statistical