Cellular automata approach to three-phase traffic theory
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- 13 November 2002
- journal article
- Published by IOP Publishing in Journal of Physics A: General Physics
- Vol. 35 (47), 9971-10013
- https://doi.org/10.1088/0305-4470/35/47/303
Abstract
The cellular automata (CA) approach to traffic modeling is extended to allow for spatially homogeneous steady state solutions that cover a two dimensional region in the flow-density plane. Hence these models fulfill a basic postulate of a three-phase traffic theory proposed by Kerner. This is achieved by a synchronization distance, within which a vehicle always tries to adjust its speed to the one of the vehicle in front. In the CA models presented, the modelling of the free and safe speeds, the slow-to-start rules as well as some contributions to noise are based on the ideas of the Nagel-Schreckenberg type modelling. It is shown that the proposed CA models can be very transparent and still reproduce the two main types of congested patterns (the general pattern and the synchronized flow pattern) as well as their dependence on the flows near an on-ramp, in qualitative agreement with the recently developed continuum version of the three-phase traffic theory [B. S. Kerner and S. L. Klenov. 2002. J. Phys. A: Math. Gen. 35, L31]. These features are qualitatively different than in previously considered CA traffic models. The probability of the breakdown phenomenon (i.e., of the phase transition from free flow to synchronized flow) as function of the flow rate to the on-ramp and of the flow rate on the road upstream of the on-ramp is investigated. The capacity drops at the on-ramp which occur due to the formation of different congested patterns are calculated.Keywords
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This publication has 48 references indexed in Scilit:
- Empirical macroscopic features of spatial-temporal traffic patterns at highway bottlenecksPhysical Review E, 2002
- Traffic and related self-driven many-particle systemsReviews of Modern Physics, 2001
- Complexity of Synchronized Flow and Related Problems for Basic Assumptions of Traffic Flow TheoriesNetworks and Spatial Economics, 2001
- Experimental features of the emergence of moving jams in free traffic flowJournal of Physics A: General Physics, 2000
- Statistical physics of vehicular traffic and some related systemsPhysics Reports, 2000
- Theory of Breakdown Phenomenon at Highway BottlenecksTransportation Research Record: Journal of the Transportation Research Board, 2000
- The physics of trafficPhysics World, 1999
- Phase Diagram of Traffic States in the Presence of InhomogeneitiesPhysical Review Letters, 1999
- Experimental Features of Self-Organization in Traffic FlowPhysical Review Letters, 1998
- Experimental properties of complexity in traffic flowPhysical Review E, 1996