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A straightforward frequency-estimation technique for GPS carrier-phase time transfer

机译:GPS载波相位时间传输的直接频率估计技术

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Although Global Positioning System (GPS) carrier-phase time transfer (GPSCPTT) offers frequency stability approaching I0-15 at averaging times of 1 d, a discontinuity occurs in the time-transfer estimates between the end of one processing batch (1-3 d in length) and the beginning of the next. The average frequency over a multiday analysis period often has been computed by first estimating and removing these discontinuities, i.e., through concatenation. We present a new frequency-estimation technique in which frequencies are computed from the individual batches then averaged to obtain the mean frequency for a multiday period. This allows the frequency to be computed without the uncertainty associated with the removal of the discontinuities and requires fewer computational resources. The new technique was tested by comparing the fractional frequency-difference values it yields to those obtained using a GPSCPTT concatenation method and those obtained using two-way satellite time-and-frequency transfer (TWSTFT). The clocks studied were located in Braunschweig, Germany, and in Boulder, CO. The frequencies obtained from the GPSCPTT measurements using either method agreed with those obtained from TWSTFT at several parts in 1016. The frequency values obtained from the GPSCPTT data by use of the new method agreed with those obtained using the concatenation technique at 1 - 4 · 10-16.
机译:尽管全球定位系统(GPS)载波相位时间传输(GPSCPTT)在1 d的平均时间处提供了接近I0-15的频率稳定性,但在一个处理批次结束(1-3 d)之间的时间传输估计中出现了不连续性长度)和下一个开始。通常通过首先估算并消除这些不连续性(即通过串联)来计算多日分析期间的平均频率。我们提出了一种新的频率估算技术,其中从各个批次中计算出频率,然后将其平均以获得多日期间的平均频率。这允许计算频率而没有与消除不连续性相关的不确定性,并且需要较少的计算资源。通过比较新技术产生的分数频率差值与使用GPSCPTT级联方法获得的分数频率差值以及使用双向卫星时频转换(TWSTFT)获得的分数频率差值,对新技术进行了测试。研究的时钟分别位于德国不伦瑞克和科罗拉多州的博尔德。使用这两种方法从GPSCPTT测量获得的频率与从TWSTFT在1016年的多个部分获得的频率一致。通过使用GPSCPTT数据获得的频率值新方法与使用串联技术以1-4·10-16获得的方法一致。

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