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Editorial

Traffic and granular flow: the role of data and technology in the understanding of particle dynamics

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References

  • Bando, M., Hasebe, K., Nakanishi, K., & Nakayama, A. (1998). Analysis of optimal velocity model with explicit delay. Physical Review E, 58(5), 5429–5435.
  • Baqui, M., Samad, M. D., & Löhner, R. (2019). A novel framework for automated monitoring and analysis of high density pedestrian flow. Journal of Intelligent Transportation Systems, 24(6), 585–597. https://doi.org/10.1080/15472450.2019.1643724
  • Dülgar, Y., Molzahn, S.-E., Rehborn, H., Koller, M., Kerner, B. S., Wegerle, D., Schreckenberg, M., Menth, M., & Klenov, S. L. (2019). Empirical random phase transitions between free flow and synchronized flow at highway bottlenecks. Journal of Intelligent Transportation Systems, 24(6), 539–555. https://doi.org/10.1080/15472450.2019.1615488
  • Gaddam, H. K., & Rao, K. R. (2020). A two-sided lateral gap continuum model and its numerical simulation for non-lane based heterogeneous traffic environment. Journal of Intelligent Transportation Systems, 24(6), 635–653. https://doi.org/https://doi.org/10.1080/15472450.2020.1775086
  • Gipps, P. G. (1981). A behavioural car-following model for computer simulation. Transportation Research Part B: Methodological, 15(2), 105–111. https://doi.org/10.1016/0191-2615(81)90037-0
  • Kerner, B. S. (2015). Microscopic theory of traffic-flow instability governing traffic breakdown at highway bottlenecks: Growing wave of increase in speed in synchronized flow. Physical Review E, 92(6).
  • Lohner, R. (2010). On the modeling of pedestrian motion. Applied Mathematical Modelling, 34(2), 366–382.
  • Molzahn, S.-E., Kerner, B. S., & Rehborn, H. (2019). Phase based jam warnings: An analysis of synchronized flow with floating car data. Journal of Intelligent Transportation Systems, 24(6), 569–584. https://doi.org/10.1080/15472450.2019.1638781
  • National Association of City Transportation Officials (NACTO). (2019). Shared Micromobility in the U.S.: 2019.
  • Raju, N., Arkatkar, S., & Joshi, G. (2019). Evaluating performance of selected vehicle following models using trajectory data under mixed traffic conditions. Journal of Intelligent Transportation Systems, 24(6), 617–634. https://doi.org/10.1080/15472450.2019.1675522
  • Tordeux, A., Chraibi, M., Seyfried, A., & Schadschneider, A. (2019). Prediction of pedestrian dynamics in complex architectures with artificial neural networks. Journal of Intelligent Transportation Systems, 24(6), 556–568. https://doi.org/https://doi.org/10.1080/15472450.2019.1621756
  • Treiber, M., Hennecke, A., & Helbing, D. (2000). Congested traffic states in empirical observations and microscopic simulations. Physical Review. E, Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics, 62(2 Pt A), 1805–1824. https://doi.org/10.1103/physreve.62.1805
  • Wegerle, D., Kerner, B. S., Schreckenberg, M., & Klenov, S. L. (2019). Prediction of moving bottleneck through the use of probe vehicles: A simulation approach in the framework of three-phase traffic theory. Journal of Intelligent Transportation Systems, 24(6), 598–616. https://doi.org/10.1080/15472450.2019.1652825
  • Wiedemann, R. (1974). Simulation des Straßenverkehrsflusses (1974th ed.). Universität Stuttgart: Institut für Straßen- und Verkehrswesen.

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