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Wireless Data Collection System for Real-Time Arterial Travel Time Estimates

机译:用于实时动脉行程时间估计的无线数据采集系统

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摘要

This project pursued several objectives conducive to the implementation and testing of a Bluetooth (BT) based system to collect travel time data, including the deployment of a BT-based travel time data collection system to perform comprehensive testing on all the components. Two different BT-based travel time data collection systems were installed. The first system, composed of two DCUs, was installed on a corridor located in Salem, OR. Extensive testing was done on this system, including the collection of travel time samples. A second system composed of five DCUs was installed along 99W in the city of Tigard, OR. Very limited data collection was done on 99W due to the lack of network connectivity. Six different antenna types were characterized using the two DCU BT-based travel time data collection system. The result of the antenna characterization tests showed that vertically polarized antennas with gains between 9 and 12 dBi are good candidates to support a BT-based travel time data collection system. Antennas with circular polarization do not seem to improve the performance, despite the lack of control regarding the orientation of BT enabled devices in most applications. Travel time samples were also collected with this system. The results indicate that a trade-off exist between the number of samples obtained and the accuracy of these travel time samples. This trade-off is most likely the result of differences in road coverage areas provided by the different antenna types.
机译:该项目追求的几个目标有利于实施和测试基于蓝牙(BT)的系统以收集旅行时间数据,包括部署基于BT的旅行时间数据收集系统以对所有组件进行全面测试。安装了两个不同的基于BT的旅行时间数据收集系统。第一个系统由两个DCU组成,安装在俄勒冈州塞勒姆的走廊上。在此系统上进行了广泛的测试,包括旅行时间样本的收集。在俄勒冈州的蒂加德市,沿99W安装了由五个DCU组成的第二个系统。由于缺乏网络连接,使用99W进行的数据收集非常有限。使用两个基于DCU BT的行进时间数据收集系统对六种不同的天线类型进行了表征。天线特性测试的结果表明,增益在9到12 dBi之间的垂直极化天线是支持基于BT的旅行时间数据收集系统的不错选择。尽管在大多数应用中缺乏对启用BT的设备的方向的控制,但圆极化天线似乎并未改善性能。该系统还收集了旅行时间样本。结果表明,在获得的样本数量和这些行进时间样本的准确性之间存在折衷。这种折衷很可能是由不同天线类型提供的道路覆盖区域差异的结果。

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