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Comparison of two continuous GPS carrier-phase time transfer techniques

机译:两种连续GPS载波相位时间传输技术的比较

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摘要

Global Positioning System (GPS) carrier-phase (CP) time transfer, as a widely accepted high-precision time transfer method, frequently shows a data-batch boundary discontinuity of up to 1 ns, because of the inconsistency of the phase ambiguities between two consecutive data batches. To eliminate the data-batch boundary discontinuity, several techniques have been proposed in recent years. The question is how large the solutions of these techniques differ from each other and how well the solutions are faithful to clocks. To answer these questions, this paper chooses two techniques to study: Revised RINEX-Shift (RRS) technique [1-2], and Phase Common-View (Phase-CV) technique [3-4]. This paper shows that the time deviation of the difference between the two techniques is below 100 ps, for an averaging time of less than 10 days. Especially, for an averaging time of less than 1 day, the time deviation is less than 30 ps. We also find that both RRS and Phase-CV match TWSTFT (two-way satellite time and frequency transfer) and TWOTFT (two-way optical-fiber time and frequency transfer) quite well. The difference is typically within ±0.3 ns for more than 20 days. The above results are all based on a short-distance links (less than 2500 km). A long-distance comparison between these two techniques, such as a transatlantic link, has not yet been investigated.
机译:作为全球公认的高精度时间传输方法,全球定位系统(GPS)载波相位(CP)时间传输通常会显示高达1 ns的数据批边界不连续性,因为两者之间的相位歧义不一致连续的数据批次。为了消除数据块边界不连续性,近年来已经提出了几种技术。问题是这些技术的解决方案彼此之间有多大差异,以及这些解决方案对时钟的忠实度如何。为了回答这些问题,本文选择两种技术进行研究:修正的RINEX-Shift(RRS)技术[1-2]和相位共视(Phase-CV)技术[3-4]。本文显示两种技术之间差异的时间偏差低于100 ps,平均时间少于10天。特别是,对于少于1天的平均时间,时间偏差小于30 ps。我们还发现RRS和Phase-CV都非常匹配TWSTFT(双向卫星时间和频率传输)和TWOTFT(双向光纤时间和频率传输)。在20天内,差异通常在±0.3 ns之内。以上结果均基于短距离链路(小于2500公里)。尚未研究这两种技术之间的远距离比较,例如跨大西洋连接。

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