Institute for Advanced Simulation 7, Civil Safety Research, Forschungszentrum Jülich, 52428 Jülich, Germany.
Sensors (Basel). 2021 Mar 17;21(6):2108. doi: 10.3390/s21062108.
For our understanding of the dynamics inside crowds, reliable empirical data are needed, which could enable increases in safety and comfort for pedestrians and the design of models reflecting the real dynamics. A well-calibrated camera system can extract absolute head position with high accuracy. The inclusion of inertial sensors or even self-contained full-body motion capturing systems allows the relative tracking of invisible people or body parts or capturing the locomotion of the whole body even in dense crowds. The newly introduced hybrid system maps the trajectory of the top of the head coming from a full-body motion tracking system to the head trajectory of a camera system in global space. The fused data enable the analysis of possible correlations of all observables. In this paper we present an experiment of people passing though a bottleneck and show by example the influences of bottleneck width and motivation on the overall movement, velocity, stepping locomotion and rotation of the pelvis. The hybrid tracking system opens up new possibilities for analyzing pedestrian dynamics inside crowds, such as the space requirement while passing through a bottleneck. The system allows linking any body motion to characteristics describing the situation of a person inside a crowd, such as the density or movements of other participants nearby.
为了深入了解人群内部的动态,我们需要可靠的经验数据,从而提高行人和模型设计的安全性和舒适度,经验数据可以反映真实的动态。经过良好校准的摄像系统可以高精度地提取绝对头部位置。惯性传感器甚至独立的全身运动捕捉系统的加入,可以实现对不可见人员或身体部位的相对跟踪,或者即使在人群密集的情况下,也可以捕捉整个身体的运动。新引入的混合系统将来自全身运动跟踪系统的头顶轨迹映射到全局空间中的摄像系统的头部轨迹。融合后的数据可以分析所有可观察量之间的可能相关性。在本文中,我们介绍了一个人通过瓶颈的实验,并通过示例展示了瓶颈宽度和动机对整体运动、速度、脚步运动和骨盆旋转的影响。混合跟踪系统为分析人群内部的行人动态开辟了新的可能性,例如通过瓶颈时的空间需求。该系统允许将任何身体运动与描述人群中人员情况的特征(如附近其他参与者的密度或运动)联系起来。