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The GFZ real-time GNSS precise positioning service system and its adaption for COMPASS

机译:GFZ实时GNSS精确定位服务系统及其对COMPASS的适应

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Motivated by the IGS real-time Pilot Project, GFZ has been developing its own real-time precise positioning service for various applications. An operational system at GFZ is now broadcasting real-time orbits, clocks, global ionospheric model, uncalibrated phase delays and regional atmospheric corrections for standard PPP, PPP with ambiguity fixing, single-frequency PPP and regional augmented PPP. To avoid developing various algorithms for different applications, we proposed a uniform algorithm and implemented it into our realtime software. In the new processing scheme, we employed un-differenced raw observations with atmospheric delays as parameters, which are properly constrained by real-time derived global ionospheric model or regional atmospheric corrections and by the empirical characteristics of the atmospheric delay variation in time and space. The positioning performance in terms of convergence time and ambiguity fixing depends mainly on the quality of the received atmospheric information and the spatial and temporal constraints. The un-differenced raw observation model can not only integrate PPP and NRTK into a seamless positioning service, but also syncretize these two techniques into a unique model and algorithm. Furthermore, it is suitable for both dual-frequency and sing-frequency receivers. Based on the real-time data streams from IGS, EUREF and SAPOS reference networks, we can provide services of global precise point positioning (PPP) with 5-10 cm accuracy, PPP with ambiguity-fixing of 2-5 cm accuracy, PPP using single-frequency receiver with accuracy of better than 50 cm and PPP with regional augmentation for instantaneous ambiguity resolution of 1-3 cm accuracy. We adapted the system for current COMPASS to provide PPP service. COMPASS observations from a regional network of nine stations are used for precise orbit determination and clock estimation in simulated real-time mode, the orbit and clock products are applied for real-time precise point positioning. The simulated real-time PPP service confirms that real-time positioning services of accuracy at dm-level and even cm-level is achievable with COMPASS only.
机译:在IGS实时试点项目的推动下,GFZ一直在为各种应用开发自己的实时精确定位服务。 GFZ的一个操作系统现在正在广播实时轨道,时钟,全球电离层模型,未经校准的相位延迟以及针对标准PPP,含歧义PPP的PPP,单频PPP和区域增强PPP的区域大气校正。为了避免针对不同的应用开发各种算法,我们提出了一种统一的算法并将其实现到实时软件中。在新的处理方案中,我们采用具有大气延迟的无差异原始观测值作为参数,这些参数已受到实时导出的全球电离层模型或区域大气校正以及大气时空变化在时间和空间上的经验特性的适当约束。在收敛时间和模糊度固定方面的定位性能主要取决于接收到的大气信息的质量以及时空约束。无差异的原始观测模型不仅可以将PPP和NRTK集成到一个无缝的定位服务中,而且可以将这两种技术融合为一个独特的模型和算法。此外,它适用于双频和单频接收机。基于来自IGS,EUREF和SAPOS参考网络的实时数据流,我们可以提供5-10 cm精度的全球精确点定位(PPP),2-5 cm精度的模糊度固定的PPP,精度优于50 cm的单频接收机和具有区域扩展功能的PPP,可实现1-3 cm精度的瞬时模糊度。我们针对当前的COMPASS调整了系统,以提供PPP服务。来自9个站点的区域网络的COMPASS观测值用于在模拟实时模式下进行精确的轨道确定和时钟估计,而轨道和时钟乘积则用于实时的精确点定位。模拟的实时PPP服务证实了仅使用COMPASS才能实现dm级甚至cm级精度的实时定位服务。

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