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Comparative Study of Macroscopic Pedestrian Models

机译:宏观行人模型比较研究

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We analyze numerically some macroscopic models of pedestrian motion to compare their capabilities of reproducing characteristic features of crowd behavior, such as travel times minimization and crowded zones avoidance, as well as complex dynamics like stop-and-go waves and clogging at bottlenecks. We compare Hughes’ model with different running costs, a variant with local dependency on the density gradient proposed in Xia et al. (2009), and a second order model derived from the Payne-Whitham traffic model which has first been analyzed in Jiang et al. (2010). In particular, our study shows that first order models are incapable of reproducing stop-and-go waves and blocking at exits.
机译:我们对一些行人运动的宏观模型进行了数值分析,以比较它们再现人群行为特征的能力,例如最小化行驶时间和避免拥挤区域,以及复杂的动力学,如走走停停和交通堵塞等。我们将休斯的模型与不同的运行成本进行了比较,这是Xia等人提出的局部依赖于密度梯度的变体。 (2009年),以及从Payne-Whitham交通模型导出的二阶模型,该模型首先在Jiang等人中进行了分析。 (2010)。特别是,我们的研究表明,一阶模型无法重现停走的波浪和出口处的阻塞。

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