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首页> 外文期刊>Journal of surveying engineering >PPP Technique Analysis Based on Time Convergence, Repeatability, IGS Products, Different Software Processing, and GPS+GLONASS Constellation
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PPP Technique Analysis Based on Time Convergence, Repeatability, IGS Products, Different Software Processing, and GPS+GLONASS Constellation

机译:基于时间收敛,可重复性,IGS产品,不同软件处理和GPS + GLONASS星座的PPP技术分析

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摘要

In recent years interest has increased for precise point positioning (PPP), which provides an alternative to precise relative processing because of its potential as a reliable absolute positioning technique. PPP technique takes advantage of satellite orbit and clock products obtained from the global infrastructure of permanent stations. As a result, PPP requires only one dual-frequency, carrier-phase global positioning system (GPS) receiver on the client side and, thus, avoids the expensive and logistic difficulties of deploying a network of global navigation satellite system (GNSS) receivers around survey areas or in isolated places, such as the Arctic or less populated areas. The broad question of the place of PPP in the future spectrum of space geodetic measurement techniques is addressed in this study by investigating specific aspects of PPP. These aspects involve the following: (1) the time convergence solution in coordinates and accuracy; (2) the observational time required to guarantee the absolute character of the coordinates; (3) the coordinate variations by using rapid and ultrarapid International GNSS Service (IGS) orbits and clock files compared with the final IGS files, which is a useful test for real-time or near-real-time possible users; (4) the comparison of coordinate differences obtained in the postprocessing of daily observation receiver independent exchange (RINEX) files using different software [BERNESE v5.0 along with the four programs in the Precise Point Positioning Software Centre project; Automatic Precise Positioning Service (APPS), Canadian Spatial Reference System Online Global GPS Processing Service (CSRS-PPP), GPS Analysis and Position Software (GAPS), and Magic Global Navigation Satellite System (MagicGNSS) (GMV)]; and (5) the possibilities of the GPS+GLONASS constellation to reduce the convergence time solution and to improve the accuracy of the solution. Some of these five aspects have been partially analyzed in other papers, but this study analyzes these aspects as a whole. Daily observation files from eight IGS stations were analyzed from January 1, 2010, to January 10, 2010. The results offer a complete perspective of the PPP technique, its future prospects, and its current limitations in static positioning.
机译:近年来,人们对精确点定位(PPP)的兴趣日益增加,由于其作为可靠的绝对定位技术的潜力,它提供了精确相对处理的替代方法。 PPP技术利用了从永久性站点的全球基础结构获得的卫星轨道和时钟产品的优势。结果,PPP在客户端仅需要一个双频,载波相位全球定位系统(GPS)接收器,从而避免了在周围部署全球导航卫星系统(GNSS)接收器网络的昂贵和后勤困难调查区域或偏远地区,例如北极或人口较少的地区。通过研究PPP的特定方面,本研究解决了PPP在未来空间大地测量技术范围中的广泛问题。这些方面涉及以下方面:(1)时间收敛性的坐标和精度解决方案; (2)保证坐标绝对特性所需的观测时间; (3)与最终的IGS文件相比,使用快速,超快速的国际GNSS服务(IGS)轨道和时钟文件进行坐标变化,这对于实时或接近实时的用户而言是一个有用的测试; (4)使用不同的软件[BERNESE v5.0]以及精确点定位软件中心项目中的四个程序,对每日观测接收者独立交换(RINEX)文件的后处理中获得的坐标差进行比较;自动精确定位服务(APPS),加拿大空间参考系统在线全球GPS处理服务(CSRS-PPP),GPS分析和定位软件(GAPS)和Magic Global Navigation Satellite System(MagicGNSS)(GMV)]; (5)GPS + GLONASS星座图减少收敛时间解并提高解的准确性的可能性。这五个方面中的一些已在其他论文中进行了部分分析,但本研究将这些方面作为一个整体进行了分析。从2010年1月1日至2010年1月10日,对来自八个IGS站的每日观测文件进行了分析。结果为PPP技术,其未来前景以及当前在静态定位方面的局限性提供了完整的视角。

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  • 来源
    《Journal of surveying engineering》 |2011年第3期|p.99-108|共10页
  • 作者单位

    Dept. of Cartographic Engineering, Geodesy and Photogrammetry, Polytechnic Univ. of Valencia, CCamino de Vera s, Valencia 46022, Spain.;

    Dept. of Cartographic Engineering, Geodesy and Photogrammetry, Polytechnic Univ. of Valencia, CCamino de Vera s, Valencia 46022, Spain.;

    Cartographic Institute of Valencia, C/ de los Santos Justo y Pastor 116, 46022 Valencia, Spain.;

    Dept. of Cartographic Engineering, Geodesy and Photogrammetry, Polytechnic Univ. of Valencia, CCamino de Vera s, Valencia 46022, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    global positioning; geodetic surveys; analysis; accuracy;

    机译:全球定位;大地测量分析;准确性;

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