Time-delayed Follow-the-Leader model for pedestrians walking in line
arXiv:1412.7537 · doi:10.3934/nhm.2015.10.579
Abstract
We use the results of a pedestrian tracking experiment to identify a follow-the-leader model for pedestrians walking-in-line. We demonstrate the existence of a time-delay between a subject's response and the predecessor's corresponding behavior. This time-delay induces an instability which can be damped out by a suitable relaxation. By comparisons with the experimental data, we show that the model reproduces well the emergence of large-scale structures such as congestions waves. The resulting model can be used either for modeling pedestrian queuing behavior or can be incorporated into bi-dimensional models of pedestrian traffic. Acknowledgements: This work has been supported by the french 'Agence Nationale pour la Recherche (ANR)' in the frame of the contract "Pedigree" (ANR-08-SYSC-015-01). JH acknowledges support of the ANR and the Institut de Math{é}matiques de Toulouse, where he conducted this research. AJ acknowledges support of the ANR and of the Laboratoire de physique t A c orique in Orsay where she conducted this research. PD is on leave from CNRS, Institut de Mat A c matiques de Toulouse, France.
References in corpus (7)
- Basics of Modelling the Pedestrian Flow
- Extended floor field CA model for evacuation dynamics
- Traffic Instabilities in Self-Organized Pedestrian Crowds
- Pedestrian flows in bounded domains with obstacles
- A hierarchy of heuristic-based models of crowd dynamics
- Properties of pedestrians walking in line: Stepping behavior
- Vision-based macroscopic pedestrian models
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- Comparing first order microscopic and macroscopic crowd models for an increasing number of massive agents