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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Dynamic analysis of pedestrian crossing behaviors on traffic flow at unsignalized mid-block crosswalks
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Dynamic analysis of pedestrian crossing behaviors on traffic flow at unsignalized mid-block crosswalks

机译:无信号中段人行横道人行横道行为对交通流的动态分析

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It is important to study the effects of pedestrian crossing behaviors on traffic flow for solving the urban traffic jam problem. Based on the Nagel-Schreckenberg (NaSch) traffic cellular automata (TCA) model, a new one-dimensional TCA model is proposed considering the uncertainty conflict behaviors between pedestrians and vehicles at unsignalized mid-block crosswalks and defining the parallel updating rules of motion states of pedestrians and vehicles. The traffic flow is simulated for different vehicle densities and behavior trigger probabilities. The fundamental diagrams show that no matter what the values of vehicle braking probability, pedestrian acceleration crossing probability, pedestrian backing probability and pedestrian generation probability, the system flow shows the "increasing-saturating-decreasing" trend with the increase of vehicle density; when the vehicle braking probability is lower, it is easy to cause an emergency brake of vehicle and result in great fluctuation of saturated flow; the saturated flow decreases slightly with the increase of the pedestrian acceleration crossing probability; when the pedestrian backing probability lies between 0.4 and 0.6, the saturated flow is unstable, which shows the hesitant behavior of pedestrians when making the decision of backing; the maximum flow is sensitive to the pedestrian generation probability and rapidly decreases with increasing the pedestrian generation probability, the maximum flow is approximately equal to zero when the probability is more than 0.5. The simulations prove that the influence of frequent crossing behavior upon vehicle flow is immense; the vehicle flow decreases and gets into serious congestion state rapidly with the increase of the pedestrian generation probability.
机译:研究行人过路行为对交通流量的影响对于解决城市交通拥堵问题具有重要意义。基于Nagel-Schreckenberg(NaSch)交通蜂窝自动机(TCA)模型,提出了一种新的一维TCA模型,该模型考虑了无信号中段人行横道上行人与车辆之间的不确定性冲突行为,并定义了运动状态的并行更新规则行人和车辆。针对不同的车辆密度和行为触发概率模拟交通流。基本图表明,无论车辆制动概率,行人加速穿越概率,行人后退概率和行人产生概率的值是多少,系统流程都随着车辆密度的增加而呈现出“增加-饱和-减少”的趋势。当车辆制动概率较低时,容易引起车辆紧急制动,导致饱和流量的波动大;随着行人加速穿越概率的增加,饱和流量略有减小。当行人的后备概率在0.4到0.6之间时,饱和流量不稳定,这表明行人在做出后备决策时的犹豫行为。最大流量对行人产生概率敏感,并且随着行人产生概率的增加而迅速减小,当概率大于0.5时,最大流量近似等于零。仿真表明,频繁穿越行为对车辆流量的影响很大。随着行人产生概率的增加,车辆流量减少并迅速进入严重的拥堵状态。

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