Baglietto Gabriel, Parisi Daniel R
Facultad de Ingeniería, UNLP, Calle 1 esquina 47, 1900 La Plata, Argentina.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 May;83(5 Pt 2):056117. doi: 10.1103/PhysRevE.83.056117. Epub 2011 May 23.
An off-lattice automaton for modeling pedestrian dynamics is presented. Pedestrians are represented by disks with variable radius that evolve following predefined rules. The key feature of our approach is that although positions and velocities are continuous, forces do not need to be calculated. This has the advantage that it allows using a larger time step than in force-based models. The room evacuation problem and circular racetrack simulations quantitatively reproduce the available experimental data, both for the specific flow rate and for the fundamental diagram of pedestrian traffic with an outstanding performance. In this last case, the variation of two free parameters (r(min) and r(max)) of the model accounts for the great variety of experimental fundamental diagrams reported in the literature. Moreover, this variety can be interpreted in terms of these model parameters.
提出了一种用于模拟行人动力学的非晶格自动机。行人由具有可变半径的圆盘表示,这些圆盘按照预定义的规则演化。我们方法的关键特性是,尽管位置和速度是连续的,但不需要计算力。这具有一个优点,即它允许使用比基于力的模型更大的时间步长。房间疏散问题和圆形赛道模拟在特定流量以及行人交通基本图方面都能定量地重现现有的实验数据,表现出色。在最后这种情况下,模型的两个自由参数(r(min) 和 r(max))的变化解释了文献中报道的各种实验基本图。此外,这种多样性可以根据这些模型参数来解释。