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Efficient High-Rate Satellite Clock Estimation for PPP Ambiguity Resolution Using Carrier-Ranges

机译:使用载波范围的PPP模糊度解析的高效高速卫星时钟估计

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摘要

In order to catch up the short-term clock variation of GNSS satellites, clock corrections must be estimated and updated at a high-rate for Precise Point Positioning (PPP). This estimation is already very time-consuming for the GPS constellation only as a great number of ambiguities need to be simultaneously estimated. However, on the one hand better estimates are expected by including more stations, and on the other hand satellites from different GNSS systems must be processed integratively for a reliable multi-GNSS positioning service. To alleviate the heavy computational burden, epoch-differenced observations are always employed where ambiguities are eliminated. As the epoch-differenced method can only derive temporal clock changes which have to be aligned to the absolute clocks but always in a rather complicated way, in this paper, an efficient method for high-rate clock estimation is proposed using the concept of “carrier-range” realized by means of PPP with integer ambiguity resolution. Processing procedures for both post- and real-time processing are developed, respectively. The experimental validation shows that the computation time could be reduced to about one sixth of that of the existing methods for post-processing and less than 1 s for processing a single epoch of a network with about 200 stations in real-time mode after all ambiguities are fixed. This confirms that the proposed processing strategy will enable the high-rate clock estimation for future multi-GNSS networks in post-processing and possibly also in real-time mode.
机译:为了赶上GNSS卫星的短期时钟变化,必须以高速率估算和更新时钟校正,以进行精确点定位(PPP)。仅当需要同时估计大量歧义时,此估计对于GPS星座而言已经非常耗时。但是,一方面,期望通过包括更多台站来获得更好的估计,另一方面,对于可靠的多GNSS定位服务,必须对来自不同GNSS系统的卫星进行综合处理。为了减轻繁重的计算负担,在消除歧义的地方总是采用历时不同的观察结果。由于时差方法只能导出必须与绝对时钟对齐的时间时钟变化,而且总是以相当复杂的方式得出,因此,本文提出了一种有效的方法,该方法使用“载波”概念-范围”是通过具有整数歧义分辨率的PPP实现的。分别开发了后处理和实时处理的处理程序。实验验证表明,在所有模棱两可的情况下,可以将计算时间减少到现有后处理方法的六分之一左右,并且可以将处理大约200个站点的网络的单个时期的处理时间减少到不到1秒是固定的。这证实了所提出的处理策略将在后处理以及可能在实时模式下为未来的多GNSS网络实现高速率时钟估计。

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