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Probe-Based Traffic Monitoring Systems with Wireless Location Technology: An Investigation of the Relationship Between System Design and Effectiveness

机译:无线定位技术的基于探针的交通监控系统:系统设计与有效性之间的关系研究

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摘要

As agencies place more emphasis on monitoring and managing the roadway network, the concept of traffic monitoring systems based on wireless location technology (WLT) is generating increasing interest. WLT-based monitoring anonymously samples the location of probes or drivers by using wireless devices, such as cellular phones. By using a series of these probe vehicle locations, WLT-based monitoring systems could generate true point-to-point speed estimates with a minimal infrastructure investment. Unfortunately, early deployments of these systems have not been entirely successful in generating the quality of information needed by transportation agencies and the public. When transportation agencies are approached by vendors of WLT-based monitoring systems, they have little information to determine whether the system is likely to be effective. The relationship between the design of a WLT-based monitoring system and the accuracy of speed estimates that it generates is explored. A simulation-based approach was used to define general guidelines for different aspects of system design and roadway network characteristics. The type of map matching used, the frequency between position estimates, the error of position estimates, and roadway network geometry were shown to have a significant impact on generating accurate speed estimates from a WLT-based monitoring system.
机译:随着机构更加重视对道路网络的监视和管理,基于无线定位技术(WLT)的交通监视系统的概念引起了越来越多的关注。基于WLT的监视通过使用无线设备(例如蜂窝电话)匿名采样探针或驱动器的位置。通过使用这些探测车辆的一系列位置,基于WLT的监视系统可以用最少的基础设施投资来生成真正的点对点速度估计。不幸的是,这些系统的早期部署未能完全成功地产生运输机构和公众所需的信息质量。基于WLT的监视系统的供应商与运输机构联系时,他们几乎没有信息来确定该系统是否可能有效。探索了基于WLT的监视系统的设计与其生成的速度估算的准确性之间的关系。基于仿真的方法用于为系统设计和道路网络特性的不同方面定义通用准则。所显示的地图匹配类型,位置估计之间的频率,位置估计的误差以及道路网络的几何形状对从基于WLT的监视系统生成准确的速度估计具有重大影响。

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