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A re-examination of the role of friction in the original Social Force Model

机译:重新审查摩擦在原始社会力量模型中的作用

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The fundamental diagram of pedestrian dynamics gives the relation between the density and the flow within a specific enclosure. It is characterized by two distinctive behaviors: the free-flow regime (for low densities) and the congested regime (for high densities). In the former, the flow is an increasing function of the density, while in the latter, the flow remains on hold or decreases. In this work, we perform numerical simulations of the pilgrimage at the entrance of the Jamaraat bridge (pedestrians walking along a straight corridor) and compare flow-density measurements with empirical measurements made by Helbing et al. (2007). We show that under high density conditions, the basic Social Force Model (SFM) does not completely handle the fundamental diagram reported in empirical measurements. We use analytical techniques and numerical simulations to prove that with an appropriate modification of the friction coefficient (but sustaining the SFM) it is possible to attain behaviors which are in qualitative agreement with the empirical data. Other authors have already proposed a modification of the relaxation time in order to address this problem. In this work, we unveil the fact that our approach is analogous to theirs since both affect the same term of the reduced-in-units equation of motion. We show how the friction modification affects the pedestrian clustering structures throughout the transition from the free-flow regime to the congested regime. We also show that the speed profile, normalized by width and maximum velocity yields a universal behavior regardless of the corridor dimensions.
机译:行人动态的基本图赋予特定外壳内的密度与流动之间的关系。它的特征在于两个独特的行为:自由流动制度(用于低密度)和拥挤的制度(用于高密度)。在前者中,流动是密度的越来越多的函数,而在后者中,流量保持在保持或减少。在这项工作中,我们在Jamaraat桥(沿着直流走廊行走的行人行走的行人的入口处进行了数值模拟,并比较了Helbing等人制作的经验测量的流量测量。 (2007)。我们表明,在高密度条件下,基本的社会力量模型(SFM)并不完全处理经验测量中报告的基本图。我们使用分析技术和数值模拟来证明,通过适当修改摩擦系数(但维持SFM),可以实现与经验数据的定性协议中的行为。其他作者已经提出了修改放松时间以解决这个问题。在这项工作中,我们揭示了我们的方法类似于它们的方法,因为两者都影响了单位减少的动作方程的相同项。我们展示了摩擦修改如何影响行人聚类结构在整个过渡到拥挤的制度的自由流动制度的过渡过程中。我们还表明,无论走廊尺寸如何,宽度和最大速度都会产生宽度和最大速度的速度曲线。

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