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首页> 外文期刊>Intelligent Transport Systems, IET >Destination and route choice models for bidirectional pedestrian flow based on the social force model
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Destination and route choice models for bidirectional pedestrian flow based on the social force model

机译:基于社会力量模型的双向人流目的地与路径选择模型

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摘要

In this study, social force model (SFM) is extended by using a discretisation grid to permit pedestrians to change their desired speed directions dynamically. In reality, other pedestrians may obscure the visions of the behind pedestrians, so the behind pedestrians will be blocked if they insist to walk in the final desired directions calculated by the SFM. So, a dynamic destination choice model is established to provide pedestrians a series of available intermediate destinations. Based on the dynamic destination choice model, the authors use a discretisation grid to represent all the potential moving directions of pedestrians, and model the weight of every potential moving direction. The direction with the maximum weight is selected as the optimal route at that time step. Besides, pedestrians prefer to pass near to crowds with a low relative velocity and choose the low space occupancy route when several routes have the same pedestrian density. So, pedestrian speeds, space un-occupancy, route length, crowd density and object pedestrian ratio are used to develop the weight model. The modified SFM guarantees pedestrians to obtain an available and optimal route. Compared to other models, the proposed models can be used to reproduce the behavior of bidirectional pedestrians more really.
机译:在这项研究中,通过使用离散化网格扩展了社会力量模型(SFM),以允许行人动态更改其所需的速度方向。实际上,其他行人可能会遮挡后面的行人的视线,因此,如果后面的行人坚持按照SFM计算的最终所需方向行走,就会被挡住。因此,建立了动态​​目的地选择模型,以向行人提供一系列可用的中间目的地。基于动态目的地选择模型,作者使用离散化网格表示行人的所有潜在移动方向,并对每个潜在移动方向的权重进行建模。在该时间步中,选择权重最大的方向作为最佳路线。此外,当多条路线的行人密度相同时,行人更喜欢以相对速度较低的人群靠近,并选择空间较小的路线。因此,行人速度,空间占用,路线长度,人群密度和对象行人比率被用于开发重量模型。改进的SFM保证行人获得可用的最佳路线。与其他模型相比,所提出的模型可以更真实地再现双向行人的行为。

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