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New frequency comparisons using GPS carrier-phase time transfer

机译:使用GPS载波相位时间传输的新频率比较

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In October 2002, experiments were conducted to assess the frequency accuracy available from GPS carrier-phase time transfer (GPSCPTT). In these experiments, two GPS receivers, NIST/spl I.bar/A and NIST/spl I.bar/B, were operated in close proximity with one clock, UTC(NIST), serving as the receiver clock for both. Because the same clock was used for both receivers, the resultant time series Clk(NIST/spl I.bar/A)-Clk(NIST/spl I.bar/B) is expected to have a slope (frequency difference) of zero. The experiment yielded mixed results. Data recorded 22-25 October 2002 yielded slopes in the 12-24 ps/d range with both positive and negative signs, indicating that if one averaged long enough, the frequency error obtained from GPSCPTT might average out to zero. However, data recorded 5-9 October 2002 yielded slopes in the 45-77 ps/d range, with all of the slopes having the same sign. Thus, it appears that some sort of systematic frequency error is arising in either the measurement or data-analysis process. Attempts have been made to determine the cause of this systematic error. Potential sources investigated include (a) unequal sampling rates at the two receivers, (b) the analysis technique of fixing satellite-clock corrections to predetermined values rather than estimating them, and (c) errors in the estimation of the tropospheric delay. None of these appear be the root cause of the problem. Future work will include the investigation of site- and receiver-specific effects such as temperature sensitivity and multipath.
机译:在2002年10月,进行了实验以评估GPS载流相时间转移(GPSCPTT)的频率精度。在这些实验中,两个GPS接收器,NIST / SPL I.Bar/A和NIST / SPL I.Bar/B,靠近一个时钟,UTC(NIST),用作两者的接收器时钟。由于两个接收器使用相同的时钟,所得到的时间序列CLK(NIST / SPL I.Bar/A)-Clk(nist/spl i.bar/b)预计将具有零的斜率(频率差)。实验产生了混合结果。 2002年10月22日至25日录制的数据在12-24 PS / D范围内产生斜率,两种正负符号都表示,如果一个平均足够长,则从GPSCPTT获得的频率误差可能会平均为零。但是,2002年10月5日至9日录制的数据在45-77磅/ D范围内产生斜率,所有具有相同符号的斜率。因此,似乎在测量或数据分析过程中出现了某种系统频率误差。已经尝试确定该系统错误的原因。研究的潜在来源包括(a)两个接收器的不等采样率,(b)将卫星时钟校正固定到预定值的分析技术而不是估计它们的误差,并且(c)估计对流层延迟的估计。这些都不是问题的根本原因。未来的工作将包括对网站和接收器特定效果的调查,例如温度敏感性和多径。

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