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The use of short-interval GPS data in construction operations analysis.

机译:在工程运营分析中使用短间隔GPS数据。

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摘要

The global positioning system (GPS) makes use of extremely accurate measures of the time to determine position. The times required for electronic signals to travel at the speed of light from at least four orbiting satellites to a receiver on earth is measured precisely and used to calculate the distances from the satellites to the receiver. The calculated distances are used to determine the position of the receiver through triangulation.; This research takes an approach opposite the original GPS research, focusing on the use of position to determine the time at which events occur. Specifically, this work addresses the question: Can the information pertaining to position and speed contained in a GPS record be used to autonomously identify the times at which critical events occur within a production cycle?; The research question was answered by determining the hardware needs for collecting the desired data in a useable format and developing a unique data collection tool to meet those needs. The tool was field evaluated and the data collected was used to determine the software needs for automated reduction of the data to the times at which key events occurred. The software tools were developed in the form of Time Identification Modules (TIMs). The TIMs were used to reduce data collected from a load and haul earthmoving operation to duration measures for the load, haul, dump, and return activities.; The value of the developed system was demonstrated by investigating correlations between performance times in construction operations and by using field data to verify the results obtained from productivity estimating tools. Use of the system was shown to improve knowledge and provide additional insight into operations analysis studies.*; *This dissertation is a multimedia document (contains text and other applications not available in printed format). The CD requires the following system requirements: Adobe Acrobat; Microsoft Office; Microsoft Paint.
机译:全球定位系统(GPS)利用非常精确的时间测量来确定位置。精确测量电子信号以光速从至少四个绕行卫星传播到地球上的接收器所需的时间,并将其用于计算从卫星到接收器的距离。计算出的距离用于通过三角测量确定接收器的位置。这项研究采用了与原始GPS研究相反的方法,重点是利用位置来确定事件发生的时间。具体来说,这项工作解决了以下问题:是否可以将GPS记录中包含的与位置和速度有关的信息用于自动识别生产周期内关键事件发生的时间?;通过确定以可用格式收集所需数据的硬件需求并开发满足这些需求的独特数据收集工具,可以解决该研究问题。对工具进行了现场评估,收集的数据用于确定将数据自动减少到关键事件发生时的软件需求。软件工具以时间识别模块(TIM)的形式开发。 TIM被用来将从装载和运输土方作业中收集的数据减少为载荷,运输,倾倒和返航活动的持续时间。通过研究施工作业中性能时间之间的相关性,并通过使用现场数据验证从生产率估算工具获得的结果,可以证明所开发系统的价值。事实证明,使用该系统可以提高知识水平,并提供有关运营分析研究的更多见解。 *本论文是多媒体文件(包含文本和其他应用程序,这些文件无法以印刷格式提供)。该CD要求满足以下系统要求:Adobe Acrobat;微软办公软件; Microsoft画图。

著录项

  • 作者

    Hildreth, John C.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 166 p.
  • 总页数 166
  • 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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