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Modeling real-time driver behavior when overtaking bicycles on rural roads.

机译:在乡村道路上超越自行车时,对驾驶员实时行为进行建模。

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摘要

Despite the voluminous number of studies performed regarding bicycles in urban settings, very few studies of a similar nature have been performed on rural roads. Most rural studies are performed using only crash report data. Other authors indicate that the lack of available field data (especially collected in real-time) or a means to readily collect this field data is the major hindrance to performing similar studies. While rural crashes account for approximately 8 percent of all bicycle-motor vehicle crashes in Wisconsin annually, these crashes account for more than half of all fatalities, and approximately 14 percent of all incapacitating crashes. The disparities in fatal and incapacitating crash rates indicate that rural roads are significantly more hazardous for bicyclists.;Driver behavior has long been researched in the passing maneuver context, but never before in real-time in the field. Prior research efforts have used experimental test tracks and prepared situations to evaluate driver judgment, reaction, and decision-making among other factors for vehicle-vehicle passing. These studies, conducted over the course of several decades, found similar results regarding reaction time and distances, although most interestingly found that drivers often underestimated the distances needed to perform certain passing maneuvers. This misjudgment on the part of drivers is noteworthy as it represents a common cause of collision noted in the analysis of vehicle-bicycle crashes.;This research developed a means to collect this real-time field data, and deployed this methodology through the use of a bicycle-mounted data collection system. The collected data was then used to develop the first-ever model to evaluate lateral clearance distance between vehicles and bicycles. The developed model confirms various field observations, such as when road speed limit increases, so does the lateral clearance distance provided by drivers, and that when an oncoming vehicle is present, the lateral clearance distance provided decreases.;This new model will enable stakeholders to identify those roadway segments where a paved shoulder would prove an effective safety countermeasure based on existing roadway conditions. This model will also enable roadway designers to better predict, during the design phase, those roadway segments that should be constructed with a paved shoulder.
机译:尽管在城市环境中进行了大量有关自行车的研究,但在乡村道路上进行的性质相似的研究却很少。大多数农村研究仅使用崩溃报告数据进行。其他作者指出,缺乏可用的现场数据(尤其是实时收集的数据)或无法轻松收集此现场数据的方法是进行类似研究的主要障碍。尽管每年在威斯康星州发生的农村交通事故占所有自行车机动车交通事故的8%,但这些事故占所有死亡人数的一半以上,在所有致残的交通事故中约占14%。致命事故率和无能为力的事故率之间的差异表明,农村公路对骑自行车的人来说危险更大。长期以来,驾驶员行为都是在过往机动环境中进行研究的,但从未在现场进行实时研究。先前的研究工作已经使用了实验测试轨迹和准备好的情况来评估驾驶员的判断,反应和决策以及其他车辆通过的因素。这些研究进行了几十年,发现了与反应时间和距离有关的类似结果,尽管最有趣的是,驾驶员经常低估了执行某些超车操作所需的距离。驾驶员方面的这种错误判断是值得注意的,因为它代表了车辆-自行车碰撞分析中指出的常见碰撞原因;该研究开发了一种收集实时现场数据的方法,并通过使用自行车安装的数据收集系统。然后,将收集到的数据用于开发第一个模型,以评估车辆和自行车之间的横向间隙距离。所开发的模型可以确认各种现场观察结果,例如当车速限制增加时,驾驶员提供的横向间隙距离也增加,并且当有迎面驶来的车辆出现时,提供的横向间隙距离会减小。该新模型将使利益相关者能够根据现有的道路状况,确定那些铺砌路肩可以证明是有效安全对策的道路段。该模型还将使巷道设计人员可以在设计阶段更好地预测应使用铺砌路肩构造的巷道路段。

著录项

  • 作者

    Chapman, Jeremy R.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Civil.;Transportation.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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