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Improving the effectiveness of wireless location technology-based traffic monitoring: An exploration of system design issues.

机译:改善基于无线定位技术的流量监控的有效性:系统设计问题的探索。

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摘要

A fundamental requirement for effectively monitoring and operating transportation facilities is reliable, accurate data on traffic flow. The current state-of-the-practice is to use networks of point detectors to gather information on traffic flow at fixed points on the roadway network. Wireless location technology (WLT)-based traffic monitoring offers an opportunity to expand the size of the transportation network being monitored at a lower cost than point detection. In WLT-based monitoring, the locations of individual wireless devices are sampled anonymously. By tracking a series of positions for devices in vehicles, it is theoretically possible to estimate the average travel speed on a road.; While the concept of WLT-based monitoring is attractive, past results have been mixed. Field tests have been successful at locating vehicle positions, but have not been able to generate traffic information of the quality or reliability required for most applications. This research explored how WLT-based monitoring could be improved by rigorously examining the problem from a system design perspective. The evaluation focused on two measures of effectiveness: (1) the availability of speed estimates and (2) the accuracy of speed estimates.; The performance of WLT-based monitoring system was evaluated through a combination of controlled testing on simple networks and case studies on simulated real-world networks. Significant main effects and interactions were evaluated in a systematic manner using a test bed that combined microscopic traffic simulation and an emulated WLT-based system.; The results revealed several important issues to be considered when designing and implementing a WLT-based monitoring system. The simple network and case study results all point to the need to tailor the selection of parameters such as the number of vehicles tracked and frequency between readings to handle localized traffic and geometric conditions. The results also reinforced the importance of map matching in WLT, with the Multiple Hypothesis Technique nearly always providing the best performance. The results showed that well-designed monitoring systems could produce accurate results although there were some situations where performance could be improved. Guidelines for design and use of WLT-based systems were generated and future avenues to improve system performance were noted.
机译:有效监控和操作运输设施的基本要求是可靠,准确的交通流量数据。当前的实践状态是使用点检测器网络来收集有关道路网络上固定点交通流量的信息。基于无线定位技术(WLT)的交通监控提供了一个机会,可以以比点检测更低的成本来扩展被监控的交通网络的规模。在基于WLT的监视中,将对各个无线设备的位置进行匿名采样。通过跟踪车辆中设备的一系列位置,理论上可以估计道路上的平均行驶速度。尽管基于WLT的监视的概念很吸引人,但过去的结果好坏参半。现场测试已成功地确定了车辆的位置,但未能生成大多数应用所需的质量或可靠性的交通信息。这项研究探索了如何通过从系统设计的角度严格检查问题来改善基于WLT的监视。评估侧重于两个有效性指标:(1)速度估计的可用性和(2)速度估计的准确性。通过对简单网络的受控测试和对模拟现实世界网络的案例研究的组合,评估了基于WLT的监视系统的性能。使用结合微观交通模拟和基于WLT的模拟系统的试验台,系统地评估了主要的主要影响和相互作用。结果揭示了设计和实施基于WLT的监视系统时要考虑的几个重要问题。简单的网络和案例研究结果都表明需要调整参数的选择,例如跟踪的车辆数量和读数之间的频率以处理局部交通和几何条件。结果也加强了WLT中地图匹配的重要性,多重假设技术几乎总是提供最佳性能。结果表明,尽管在某些情况下可以提高性能,但精心设计的监视系统仍可以产生准确的结果。生成了基于WLT的系统的设计和使用指南,并指出了改善系统性能的未来途径。

著录项

  • 作者

    Fontaine, Michael D.;

  • 作者单位

    University of Virginia.;

  • 授予单位 University of Virginia.;
  • 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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