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A passenger model for simulating boarding and alighting in spatially confined transportation scenarios

机译:用于在空间限制运输方案中模拟登机和升降机的乘客模型

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Crowd simulation has been widely used as a tool to demonstrate the behavior of passengers on public transport. A simulation model allows researchers to evaluate the platform or interior designs without involving real-world experimentation. In this paper, we propose a passenger model to measure the effect of different public transport vehicle layouts on the required time for boarding and alighting. We first model a low level collision avoidance behavior based on an extended social force model aiming at simulating human interactions in confined spaces. The model introduces a mechanism to emulate rotation behavior while avoiding complex geometric computations and is calibrated to experimental data. The model also allows agents to perform collision prediction in low density environments. Strategical behavior of passengers is modeled according to the recognition-primed decision paradigm and combined with the collision avoidance model. We validate our model against real-world experiments from the literature, demonstrating deviations of less than 6%. In a case study, we evaluate the boarding and alighting times required by three autonomous vehicle interior layouts proposed by industrial designers in both low-density and high-density scenarios. (C) 2020 Published by Elsevier B.V.
机译:人群模拟已被广泛用作展示乘客在公共交通工具的行为的工具。仿真模型允许研究人员评估平台或室内设计而不涉及真实世界的实验。在本文中,我们提出了一种乘客模型来衡量不同公共交通工具布局对登机和升降所需时间的影响。首先,基于扩展社会力模型的旨在模拟限制空间中的人类交互的扩展社会力模型来模拟低级碰撞避免行为。该模型引入了一种模拟旋转行为的机制,同时避免复杂的几何计算,并被校准到实验数据。该模型还允许代理在低密度环境中执行碰撞预测。乘客的战略行为是根据识别引发的决策范例进行建模的,并与碰撞避免模型相结合。我们验证了我们从文献中的真实实验的模型,证明偏差不到6%。在一个案例研究中,我们在低密度和高密度方案中评估了由工业设计师提出的三个自主车辆内部布局所需的登机和升降时间。 (c)2020由elsevier b.v发布。

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