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MODELING DRIVER BEHAVIOR ON URBAN STREETS

机译:在城市街道上模拟驾驶员行为

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摘要

Traffic flow on straight roads is the most common traffic phenomenon in urban road traffic networks. In this paper, a realistic cellular automaton (CA) model is proposed to investigate driver behavior on urban straight roads based on our field observations. Two types of driver behavior, free and car-following, are simulated. Free driving behavior is modeled by a novel five-stage speeding model (two acceleration stages, one steady stage and two deceleration stages). Car-following processes are simulated by using 1.5-s as the average headway (1.5-s rule), which is observed in local urban networks. Vehicular mechanical restrictions (acceleration and deceleration capabilities) are appropriately reflected by a five-stage speeding model, which has the dual-regimes of acceleration and deceleration. A fine grid (the length of each cell corresponds to 1 m) is used. Our simulation results demonstrate that the introduction of the dual-regimes of acceleration and deceleration, 1.5-s rule and fine grid matchesactual driver behavior well on urban straight roads.
机译:直线道路上的交通流是城市道路交通网络中最常见的交通现象。在本文中,基于我们的现场观察,提出了一种现实的细胞自动机(CA)模型来研究驾驶员在城市直路上的行为。模拟了两种驾驶员行为,即自由驾驶和跟随驾驶。自由驾驶行为通过一种新颖的五阶段速度模型(两个加速阶段,一个稳定阶段和两个减速阶段)进行建模。通过以1.5秒作为平均行驶距离(1.5秒规则)来模拟跟车过程,这在本地城市网络中可以观察到。车辆的机械限制(加速和减速能力)可以通过具有加速和减速双重状态的五阶段速度模型来反映。使用细网格(每个像元的长度对应于1 m)。我们的仿真结果表明,引入加减速,1.5 s规则和精细网格双重规则在城市直线道路上与实际驾驶员行为相匹配。

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