[1] Nagel K, Schreckenberg M. A cellular automaton model for freeway traffic [J]. J Phys Ⅰ France, 1992,2: 2221-2229.
[2] Fukui M, lshibashi Y. Traffic flow in 1D cellular automaton model including cars moving with high speed[J]. J Phys Soc Japan, 1996,65(6):1868-1870.
[3] WANG Lei. Study of self-organization criticality and phase transition behavior in one-dimensional traffic flow cellural automaton models[D]. Hefei: University of Science and Technology of China,2000. (in Chinese)
[4] HU Yong-tao. A new approach to cellular automaton traffic models and its application[D].Shanghai: Shanghai University, 1999. (in Chinese)
[5] XUE Yu, DONG Li-yun, DA1 Shi-qiang. A modified one-dimensional CA model and the influence of deceleration probability[J]. Acta Physica Sinica, 2001,50(3):445-449. (in Chinese)
[6] Chowdhury D, Santen L, Schadschneider A. Statistical physics of vehicular traffic and some related systems [J]. Physics Report, 2000,329: 199-329.
[7] Helbing D, Schreckenberg M. Cellular automata simulating experimental properties of traffic flow[J]. Phys Rev E,1999,59(3):R2505-R2508.
[8] Krauss S, Wagner P, Gawron C. Metastable states in a microscopic model of traffic flow[J]. Phys Rev E, 1997,55(4):5597-5602.
[9] Lubeck S, Schreckenberg M, Usadel K D. Density fluctuations and phase transition in the NagelSchreckenberg traffic fiow[J]. PhysRev E,1998,57(1):1171-1174.
[10] Nagel K, Paczuski M. Emergent traffic jams[J]. PhysRev E,1995,51(4):2909-2918. |