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Traffic Experiment Reveals the Nature of Car-Following

Author

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  • Rui Jiang
  • Mao-Bin Hu
  • H M Zhang
  • Zi-You Gao
  • Bin Jia
  • Qing-Song Wu
  • Bing Wang
  • Ming Yang

Abstract

As a typical self-driven many-particle system far from equilibrium, traffic flow exhibits diverse fascinating non-equilibrium phenomena, most of which are closely related to traffic flow stability and specifically the growth/dissipation pattern of disturbances. However, the traffic theories have been controversial due to a lack of precise traffic data. We have studied traffic flow from a new perspective by carrying out large-scale car-following experiment on an open road section, which overcomes the intrinsic deficiency of empirical observations. The experiment has shown clearly the nature of car-following, which runs against the traditional traffic flow theory. Simulations show that by removing the fundamental notion in the traditional car-following models and allowing the traffic state to span a two-dimensional region in velocity-spacing plane, the growth pattern of disturbances has changed qualitatively and becomes qualitatively or even quantitatively in consistent with that observed in the experiment.

Suggested Citation

  • Rui Jiang & Mao-Bin Hu & H M Zhang & Zi-You Gao & Bin Jia & Qing-Song Wu & Bing Wang & Ming Yang, 2014. "Traffic Experiment Reveals the Nature of Car-Following," PLOS ONE, Public Library of Science, vol. 9(4), pages 1-9, April.
  • Handle: RePEc:plo:pone00:0094351
    DOI: 10.1371/journal.pone.0094351
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