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Positioning and tracking construction vehicles in highly dense urban areas and building construction sites

机译:在高密度市区和建筑工地中定位和跟踪工程车辆

摘要

In this paper, we review previous radio frequency (RF)-related research in construction and further evaluate the pros and cons of several RF-based technologies including GPS, RFID, and Bluetooth. Particularly, we show the limitations of applying GPS for tracking construction vehicles in a highly dense urban area by conducting extensive field tests in Hong Kong. We then propose a continuous, all-location, real-time solution for tracking, positioning construction vehicles by integrating GPS with the vehicle navigation technology called "dead reckoning" (DR). DR automatically supplants GPS when GPS signals become unavailable or unreliable. To automatically calibrate positioning errors resulting from DR, road-side beacons can be placed at control points with well-defined coordinates. The beacon operates on the Bluetooth for establishing communication links with the in-vehicle navigation unit. In addition, the real-time location and status of a construction vehicle can be transmitted to the control center by the use of short message service over mobile phone networks. In the context of monitoring ready mixed concrete production and delivery processes on and off building sites situated within the urban environment of Hong Kong, we conducted extensive field trials of the vehicle navigation technologies for 12 months in 2005/06. The integrated vehicle tracking system is found reliable and accurate for recording key event times of the mixer truck under practical site conditions.
机译:在本文中,我们回顾了先前在建筑中与射频(RF)相关的研究,并进一步评估了几种基于RF的技术(包括GPS,RFID和Bluetooth)的优缺点。特别是,通过在香港进行广泛的现场测试,我们证明了将GPS应用于在高密度市区跟踪建筑车辆的局限性。然后,我们通过将GPS与称为“航位推算”(DR)的车辆导航技术集成,提出了一种连续的,全位置的实时解决方案,用于跟踪,定位工程车辆。当GPS信号不可用或不可靠时,DR会自动取代GPS。为了自动校准由DR引起的定位误差,可以将路边信标放置在具有明确坐标的控制点上。信标在蓝牙上运行,用于与车载导航单元建立通信链接。此外,通过在移动电话网络上使用短消息服务,可以将工程车辆的实时位置和状态传输到控制中心。在监控香港城市环境内建筑工地内外现成的混合混凝土生产和交付过程的情况下,我们于2005/06年进行了为期12个月的车辆导航技术的广泛现场试验。集成的车辆跟踪系统可靠可靠,可用于记录实际工况下搅拌车的关键事件时间。

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