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Walking Ahead: The Headed Social Force Model

机译:前进:领导的社会力量模型

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摘要

Human motion models are finding an increasing number of novel applications in many different fields, such as building design, computer graphics and robot motion planning. The Social Force Model is one of the most popular alternatives to describe the motion of pedestrians. By resorting to a physical analogy, individuals are assimilated to point-wise particles subject to social forces which drive their dynamics. Such a model implicitly assumes that humans move isotropically. On the contrary, empirical evidence shows that people do have a preferred direction of motion, walking forward most of the time. Lateral motions are observed only in specific circumstances, such as when navigating in overcrowded environments or avoiding unexpected obstacles. In this paper, the Headed Social Force Model is introduced in order to improve the realism of the trajectories generated by the classical Social Force Model. The key feature of the proposed approach is the inclusion of the pedestrians’ heading into the dynamic model used to describe the motion of each individual. The force and torque representing the model inputs are computed as suitable functions of the force terms resulting from the traditional Social Force Model. Moreover, a new force contribution is introduced in order to model the behavior of people walking together as a single group. The proposed model features high versatility, being able to reproduce both the unicycle-like trajectories typical of people moving in open spaces and the point-wise motion patterns occurring in high density scenarios. Extensive numerical simulations show an increased regularity of the resulting trajectories and confirm a general improvement of the model realism.
机译:人体运动模型正在许多不同领域中发现越来越多的新颖应用,例如建筑设计,计算机图形学和机器人运动计划。社会力量模型是描述行人运动的最受欢迎的替代方法之一。通过采用物理类比,个体被点向粒子吸收,这些粒子受到驱动其动力的社会力量的影响。这样的模型隐含地假设人类各向同性地运动。相反,经验证据表明人们在大多数情况下都朝着首选的运动方向前进。仅在特定情况下才能观察到横向运动,例如在人满为患的环境中航行或避免意外障碍时。本文介绍了“领导社会力量模型”,以提高经典社会力量模型生成的轨迹的真实性。提议的方法的主要特征是将行人的行进方向纳入用于描述每个人运动的动态模型中。计算代表模型输入的力和转矩,作为传统社会力模型得出的力项的适当函数。此外,引入了一种新的力量贡献,以便对一起行走的人们的行为进行建模。提出的模型具有高度的通用性,能够再现在开放空间中移动的人的典型单轮轨迹,以及在高密度场景中出现的逐点运动模式。广泛的数值模拟显示了所得轨迹的规律性增加,并证实了模型真实性的总体改善。

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