[2]
M. Schreckenberg, A. Schadschneider, K. Nagel and N. Ito. Discrete Stochastic Models for Traffic Flow[J]. Physical Review E, 1995, 51(4): 2939-2949.
DOI: 10.1103/physreve.51.2939
Google Scholar
[3]
OferBiham, A. Alan Middleton and Dov Levine. Self-Organization and a Dynamical transition in Traffic-Flow Models[J]. Physical Review A, 1992, 46(10): 6124-6127.
Google Scholar
[4]
Yuhai Zhang, ZhianGuo. Self-Organized CriticalityAnalysisof Pessenger Transportation Model[J]. Journal of Northwestern Institute of Architectural Engineering, 1996, 3: 12-17.
Google Scholar
[5]
Wenzhou Le, Jie Zhang, Yingli Zheng. Traffic Flow Simulation Model Based on Cellular Automation Theory[J]. Journal of South China University of Technology(Natural Science Edition), 2001, 29(8): 93-96.
Google Scholar
[6]
G. Nicolis and I. Prigogine. Self-Organization in Non-Equilibrium System, from Dissipative Structures to Order through Fluctuations[M]. New York: Wiley, (1977).
DOI: 10.1126/science.200.4342.678
Google Scholar
[7]
Manfred Eigen and Peter Schuster. The Hypercycle: A Principle of Natural Self-Organization[J]. Naturwissenschaften, 1978, 65(1): 7-41.
DOI: 10.1007/bf00420631
Google Scholar
[8]
Benoit B. Mandelbrot. The Fractal Geometry of Nature[M]. London: Macmillan, (1983).
Google Scholar
[9]
Anastasios A. Tsonis. Chaos: From Theory to Applications[M]. New York: Plenum Press, (1992).
Google Scholar
[10]
Tong Wu. Research of Self-Organization Methodology [M]. Beijing: Tsinghua University Press, 2001. 6.
Google Scholar
[11]
JinWenzhou, Zheng Yingli, Zhang Jie. Traffic Simulation at Signalized Junction Based on Cellular Automata[J]. Journal of SouthChinaUniversity of Technology(Natural Science Edition), 2001, 29(10): 88-92.
Google Scholar
[12]
Song Li, Guoguang He, Xiaoli Zhang. A Disorder Measure Method of Traffic Flow Based on Traffic Entropy[J]. Journal of Highway and Transportation Research and Development, 24(11): 92-95.
Google Scholar
[13]
H. Haken. Synergetics: Are Cooperative Phenomena Governed by Universal Principles?[J]. Naturwissenschaften, 1980, 67(3): 121-128.
DOI: 10.1007/bf01073611
Google Scholar
[14]
Guoguang He, Weidong Feng. ITS and Self-Organization Theory [J]. Journal of Highway and Transportation Research and Development, 1998, 15(3): 8-12.
Google Scholar
[15]
Roberto F. S. Andrade, Suani T. R. Pinho, Sandro C. Fraga, Ana P. M. Tanajura. New Toppling Dynamics for the Self-Organized Critical Rainfall Model[J]. Physica A, 2002, 314(1-4): 405-410.
DOI: 10.1016/s0378-4371(02)01071-3
Google Scholar
[16]
Kai Nagel and Maya Paczuski. Emergent Traffic Jams[J]. Physical Review E, 1995, 51(4): 2909-2918.
DOI: 10.1103/physreve.51.2909
Google Scholar
[17]
Binghong Wang, Dan Mao, Lei Wang, et al. Self-Organized Criticality Analysis of Traffic Flow[J]. Journal of Guangxi Normal University(Natural Science Edition), 2002, 20(1): 45-51.
Google Scholar