Traffic Accident Propagation Properties and Control Measures for Urban Links Based on Cellular Automata

Author:

Li Xian-sheng1,Zheng Xue-lian1,Guo Wei-wei2,Ren Yuan-yuan1,Wang Yu-ning1,Yang Meng13

Affiliation:

1. College of Traffic, Jilin University, Changchun 130025, China

2. Beijing Key Lab of Urban Intelligent Traffic Control Technology, North China University of Technology, Beijing 10014, China

3. Communication Science Research Institute of Heilongjiang, Harbin 150040, China

Abstract

With the rapid development of urban transport and the sharp increase in vehicle population, traffic accidents form one of the most important causes of urban traffic congestion other than the imbalance between traffic supply and demand. Traffic congestion causes severe problems, such as environment contamination and energy dissipation. Therefore, it would be useful to analyze the congestion propagation characteristics after traffic accidents. Numerical analysis and computer simulation were two of the typical methods used at present to study the traffic congestion propagation properties. The latter was more widespread as it is more consistent with the actual traffic flow and more visual than the former. In this paper, an improved cellular automata (CA) model was presented to analyze traffic congestion propagation properties and to evaluate control strategies. In order to apply them to urban traffic flow simulation, the CA models have been improved and expanded on. Computer simulations were built for congestion not only extending to the upstream intersection, but also the upstream intersection and the entire road network, respectively. Congestion propagation characteristics after road traffic accidents were obtained, and controls of different severities and durations were analyzed. The results provide the theoretical foundation and practical means for the control of congestion.

Funder

National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Mechanical Engineering

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