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首页> 外文期刊>Transportation Research Procedia >Analysis of the vehicle-bicycles interaction on two-lane rural roads using a driving simulator based on field data
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Analysis of the vehicle-bicycles interaction on two-lane rural roads using a driving simulator based on field data

机译:基于现场数据的驾驶模拟器对双车道农村公路的车辆自行车互动分析

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The presence of cyclists on Spanish two-lane rural roads is common, so they have to interact with motor vehicles. Due to the speed differential and vulnerability of cyclists, overtaking is one of the most dangerous and frequent interactions. Therefore, a minimum distance of 1.5 m must be observed. The overtaking manoeuvre depends on road section and cyclist group distribution. Interaction between cyclists and vehicles has been characterized in the past but overtaking to cyclist groups has barely been studied. This study uses a driving simulator to analyse how the presence of cyclists and their group configuration affect traffic operation and safety on two-lane rural roads. A fixed driving simulator has been adapted to incorporate cyclists, using speed and lateral position obtained from field studies. Based on field data, a physical scenario and different traffic scenarios have been recreated, so volunteers can drive the simulator – emulating a motor vehicle – tracking their speed, lateral position, and other variables. These results can be compared to those observed for checking the validity of this methodology. The driving simulator offers some results which are difficult to obtain through other methodologies, enabling a better analysis of the phenomenon. By sorting different bicycle patterns and including several volunteers, the impact of bicycle pelotons on traffic performance and safety can be characterized. This will help in offering recommendations to integrate cyclists and motor vehicles in a safer way.
机译:西班牙双车道农村道路上的骑自行车者的存在是常见的,因此他们必须与机动车互动。由于骑自行车者的速度差异和脆弱性,超车是最危险和最常见的相互作用之一。因此,必须观察到1.5米的最小距离。超车机动取决于道路段和骑自行车者组分布。过去的特征在于骑自行车者和车辆之间的相互作用,但对骑自行车的群体勉强研究过。本研究采用驾驶模拟器分析骑自行车者的存在以及他们的组配置如何影响双车道农村道路上的交通运行和安全。固定驾驶模拟器已经适用于使用从现场研究获得的速度和横向位置合并骑自行车者。基于现场数据,重新创建了物理场景和不同的交通方案,因此志愿者可以驱动模拟器 - 模拟机动车辆 - 跟踪它们的速度,横向位置和其他变量。可以将这些结果与观察到检查该方法的有效性的结果进行比较。驾驶模拟器提供了一些难以通过其他方法获得的结果,从而更好地分析了这种现象。通过对不同的自行车模式进行分类,包括几个志愿者,可以表征自行车Pelotons对交通效果和安全的影响。这将有助于提供建议以更安全的方式整合骑自行车者和机动车。

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