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Wide area RTK: A satellite navigation system based on precise real-time ionospheric modelling

机译:广域RTK:基于精确实时电离层建模的卫星导航系统

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摘要

The Wide Area Real Time Kinematic (WARTK) is an augmentation system concept for multi-frequency users based on precise real-time ionospheric modeling. It is able to provide a high accuracy and integrity GNSS positioning service over continental areas using the infrastructure of a network of permanent ground monitor stations, such as the European Geostationary Navigation Overlay Service (EGNOS) network of Ranging and Integrity Monitoring Stations (RIMS) in Europe. In this way, it allows an additional benefit to be obtained from these reference stations, that is, the network has the potential to support two independent systems: a satellite-based augmentation system, such as EGNOS, and a high-precision positioning service, based on WARTK. Indeed, thanks to the accuracy of the ionospheric corrections provided, WARTK users have available in real-time an extra constraint per satellite between the carrier phase ambiguities, which helps solve them quickly. Once such ambiguities have been solved, the GNSS user obtains navigation accurate to within 20 cm at the 95th percentile (about 10 cm RMS). Moreover, this precise positioning is achieved in a few minutes (with two frequency signals) or in a single epoch, after initial convergence of the tropospheric delay (with three frequency signals), even up to hundreds of kilometers away from the nearest reference station. While previous WARTK research has been devoted to implementing the concept and assessing its feasibility, considering in particular the accuracy achievable, the work reported in this paper focused on consolidating the results by analyzing a large and representative data set, and on deeper analysis of the integrity issue. It was carried out in the context of the Multi-constellation Regional System (MRS) project, within the European Space Agency GNSS Evolution Programme, with the aim of designing a high accuracy service for GPS and/or Galileo. Three months of actual data, from more than 25 permanent GPS stations in Europe, have been processed (some of them as a roving user), for high-, mid- and low-solar cycle conditions (in 2002, 2004 and 2006 respectively). In addition, several ionospheric storms occurred during the selected periods, with Dst values reaching up to – 150 nT. Results based on these data show that user domain integrity was maintained for baselines of up to 400 km. At the 95th percentile, the daily horizontal and vertical position errors were 20 and 30 cm, respectively, and the corresponding protection levels were about 1 and 2 m. The convergence time was around 5 minutes with actual GPS constellation data. The benefits of using a multi-constellation system were also studied, with simulated GPS and three-frequency Galileo data, showing that it is possible to reduce the convergence time to a few seconds.
机译:广域实时运动学(WARTK)是基于精确实时电离层建模的多频用户增强系统概念。它能够使用永久地面监测站网络的基础设施,在欧洲大陆地区提供高精度和完整性的GNSS定位服务,例如,欧洲测距和完整性监测站(RIMS)的欧洲对地静止导航覆盖服务(EGNOS)网络欧洲。这样,它可以从这些参考站获得额外的好处,即该网络具有支持两个独立系统的潜力:基于卫星的增强系统(例如EGNOS)和高精度定位服务,基于WARTK。实际上,由于所提供的电离层校正的准确性,WARTK用户可以实时获得每颗卫星在载波相位模糊度之间的额外约束,这有助于快速解决它们。解决了此类歧义后,GNSS用户将在第95个百分位数(约10 cm RMS)处获得精确到20 cm之内的导航。此外,在对流层延迟的初始收敛(具有三个频率信号)之后,甚至在距最近参考站数百公里的地方,在几分钟内(具有两个频率信号)或单个纪元即可实现这种精确定位。尽管WARTK先前的研究致力于实施该概念并评估其可行性,但特别考虑了可获得的准确性,本文报道的工作着重于通过分析大型且具有代表性的数据集来合并结果,以及对完整性进行更深入的分析。问题。它是在欧洲航天局GNSS演化计划内的多星座区域系统(MRS)项目的背景下进行的,目的是为GPS和/或伽利略设计高精度的服务。已处理了来自欧洲25个以上的永久性GPS站的三个月的实际数据(其中一些是流动用户),分别用于高,中和低太阳周期条件(分别在2002、2004和2006年) 。此外,在选定的时期内发生了几次电离层风暴,Dst值高达– 150 nT。根据这些数据得出的结果表明,对于长达400 km的基线,用户域完整性得以保持。在第95个百分位数处,每日水平和垂直位置误差分别为20和30 cm,相应的保护级别约为1和2 m。实际GPS星座数据的收敛时间约为5分钟。还研究了使用多星座系统的好处,并通过模拟GPS和三频Galileo数据进行了研究,结果表明可以将收敛时间减少到几秒钟。

著录项

  • 来源
    《Radio Science》 |2012年第2期|1-14|共14页
  • 作者单位

    Research Group of Astronomy and Geomatics, Technical University of Catalonia, Barcelona, Spain.;

    Research Group of Astronomy and Geomatics, Technical University of Catalonia, Barcelona, Spain.;

    Research Group of Astronomy and Geomatics, Technical University of Catalonia, Barcelona, Spain.;

    European Space Research and Technology Centre, European Space Agency, Noordwijk, Netherlands.;

    European Space Research and Technology Centre, European Space Agency, Noordwijk, Netherlands.;

    Research Group of Astronomy and Geomatics, Technical University of Catalonia, Barcelona, Spain.;

    Research Group of Astronomy and Geomatics, Technical University of Catalonia, Barcelona, Spain.;

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

    Receivers; Real-time systems; Europe; Delays; Satellite navigation systems; Convergence;

    机译:接收器;实时系统;欧洲;延迟;卫星导航系统;会聚;

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