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A dense network of differential global positioning system reference stations for precision farming.

机译:密集的差分全球定位系统参考站网络,用于精准农业。

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摘要

Scope and method of study. The purpose of this study was to assess the feasibility of a differential global positioning system having a dense network of reference receivers to enable advanced precision farming applications. The objectives of the study were; (1) to validate previously published research that atmospheric effects increase as distance between receivers increase; (2) to identify economic justification for a Dense Network of Differential GPS (DNGPS) for individual farm precision applications; (3) to determine the resolution, repeatability and accuracy obtainable with DNDGPS corrections derived from a dense network of multiple reference receivers; and, (4) to develop a farm-based DNDGPS prototype and develop a plan for Oklahoma Mesonetwork DNDGPS prototype that identifies necessary resources required for implementation. During 1995-1997, GPS data were collected from seven National Geodetic Survey (NGS) High Accuracy Reference Network (HARN) monuments in five North Central Oklahoma Counties adjacent to the vicinity of Stillwater. Data analyses utilized EXCEL Analysis Tool Pack and Statistical Analysis System (SAS) for the calculation of the positional error statistics for each one second interval in all files and correction of a designated receiver file using error values from combinations of one, two, three, four (and five) other files. EXCEL and SAS were used to evaluate the distribution of raw, corrected, and error data via means, standard deviations, and ranges; these tools provided plots of raw data, corrected data, and error data.; Finding and conclusions. It was found that a low-cost, DNDGPS of reference receivers (RR) was feasible and met or exceeded a high percentage of precision farming operations. All of the objectives were accomplished. The research found that averaging DGPS error data derived from a multiple reference receiver network dramatically improved corrected position accuracy for an autonomous receiver at an unknown location, as compared with single reference correction. Improvement was a function of network topography, density, and node (monument) position preciseness. A simulated network density on the order of the Oklahoma Mesonet (19 miles between RRs) produced consistent accuracy within the 0.75 meter requirement defined for most precision farming operations; precision improved proportionally with additional reference stations. Based on the major findings, it was concluded that the DNDGPS network concept provided locational accuracy required for precision farming. It was recommended that a DNDGPS prototype network be implemented, capable of supporting the 0.75 meter accuracy requirements of precision farming.
机译:研究范围和方法。这项研究的目的是评估具有密集的参考接收器网络的差分全球定位系统的可行性,以实现先进的精确农业应用。研究的目的是; (1)验证先前发表的研究,即随着接收器之间距离的增加,大气影响也会增加; (2)确定针对个体农场精度应用的差分GPS密集网络(DNGPS)的经济合理性; (3)确定从由多个参考接收机组成的密集网络得出的DNDGPS校正中可获得的分辨率,可重复性和准确性; (4)开发基于农场的DNDGPS原型,并为俄克拉荷马州中型网络DNDGPS原型制定计划,该计划确定实施所需的必要资源。在1995年至1997年期间,GPS数据是从俄克拉荷马州北部中部斯蒂尔沃特附近的五个县的七个国家大地测量局(NGS)高精度参考网络(HARN)纪念碑中收集的。数据分析使用EXCEL分析工具包和统计分析系统(SAS)来计算所有文件中每个一秒间隔的位置误差统计信息,并使用一,二,三,四组合的误差值对指定的接收器文件进行校正(和五个)其他文件。使用EXCEL和SAS通过均值,标准差和范围评估原始,校正和误差数据的分布;这些工具提供了原始数据,校正数据和错误数据的图表。结论和结论。人们发现,低成本,DNDGPS的参考接收器(RR)是可行的,并且可以满足甚至超过高精度农业的高比例。所有目标均已实现。研究发现,与单参考校正相比,对来自多参考接收器网络的DGPS误差数据进行平均可以显着提高未知位置的自治接收器的校正位置精度。改善取决于网络拓扑,密度和节点(纪念碑)位置的准确性。在俄克拉荷马州Mesonet等级(RR之间19英里)数量级上的模拟网络密度产生了始终如一的精度,该精度要求为大多数精确农业操作所定义的0.75米。与其他参考站成比例地提高了精度。根据主要发现,可以得出结论,DNDGPS网络概念提供了精确农业所需的位置精度。建议实施DNDGPS原型网络,该网络能够满足0.75米精度农业的精度要求。

著录项

  • 作者

    Speir, Jerry Scott.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;
  • 关键词

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