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Identification of a discernable centerline rumble strip pattern based on audible and haptic location recognition to improve traffic operations and safety.

机译:基于听觉和触觉位置识别来识别可识别的中心线隆隆声带模式,以改善交通运营和安全性。

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摘要

Maintaining correct lateral position on roadways is critical for safe and efficient operation. The driving task comprises control, navigation, and guidance, all relying predominantly upon the sense of vision; however, not all traffic control devices rely on vision. Drowsy, distracted, or inattentive drivers may not have their "eyes on the road" and, are therefore, more reliant on other senses. One way that other senses have been used to assist drivers in maintaining a proper lateral position is through the use of rumble strips. Up until the late 1990's, rumble strips were primarily used on roadway shoulders; more recently, they are also being used in centerline applications as transportation officials attempt to address the high number of cross-over-centerline crashes that occur annually. In light of the effectiveness of shoulder rumble strips in reducing the number of roadway departure crashes, many states are using the same rumble strip pattern on both the shoulder and centerline, anticipating reductions in cross-over-centerline crashes. Findings of previously conducted research indicate that this duplication of signals may violate driver expectancy.; This research focuses on determining if a different pattern is beneficial to the driver, one that would allow a driver to determine their lateral position based on a rumble strip's audible and haptic cues. It was anticipated that if the pattern is discernable to drivers, then after repeated exposure, the strips would elicit a conditioned, correct response. A number of hypotheses were enumerated to assist in determining whether or not a unique rumble strip pattern would prove to be easily identified and would ultimately benefit the driver. To support or refute the hypotheses, research was performed in two evaluation environments, a static and a dynamic. Results from the evaluations indicate that a unique rumble strip pattern can aid drivers in maintaining their correct lateral position. Based on the opposite lane and shoulder incursions experienced in the dynamic evaluation environment, every driver responded properly. In instances where the incursion was accompanied with audible and haptic feedback, a result of the rumble strips, drivers were able to respond faster when compared to those incursions lacking multi-modality.
机译:在道路上保持正确的横向位置对于安全高效地运行至关重要。驾驶任务包括控制,导航和引导,所有这些主要取决于视觉。但是,并非所有交通控制设备都依赖视觉。昏昏欲睡,分心或专心的驾驶员可能没有“视线”,因此更加依赖其他感觉。使用其他感官来帮助驾驶员保持正确的侧向位置的一种方式是通过使用隆隆声条。直到1990年代后期,隆隆的条带主要用于路肩。最近,由于交通官员试图解决每年发生的大量跨中心线碰撞事故,它们也被用于中心线应用。考虑到肩部隆隆带在减少道路偏离事故数量方面的有效性,许多州都在肩部和中心线上使用相同的隆隆带模式,以期减少跨中心线的撞击。先前进行的研究发现表明,这种信号重复可能违反驾驶员的预期。这项研究的重点是确定一种不同的模式是否对驾驶员有利,该模式可以使驾驶员根据隆隆声条的听觉和触觉提示确定他们的侧向位置。可以预料,如果驾驶员可以识别出图案,则在反复曝光后,这些条带会引发条件正确的响应。列举了许多假设,以帮助确定是否可以容易地识别出唯一的隆隆声带模式,并最终使驾驶员受益。为了支持或驳斥这些假设,我们在静态和动态两种评估环境中进行了研究。评估结果表明,独特的隆隆带状花纹可以帮助驾驶员保持正确的侧向位置。基于在动态评估环境中经历的相反的车道和路肩入侵,每个驾驶员都做出了正确的反应。在侵入伴随着声音和触觉反馈的情况下(由于隆隆的声音),与那些缺乏多模态的侵入相比,驾驶员能够更快地做出反应。

著录项

  • 作者

    Dulaski, Daniel M.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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