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In Search of a New Primary GPS Receiver for NIST

机译:寻找NIST的新主GPS接收器

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A previous publication [1] showed problems with the current NIST Time and Frequency Division primary GPS receiver when used for Precise Point Positioning (PPP)-based carrier phase time transfer. We confirm that, for this receiver, boundary discontinuities during overlapping data runs tend to be biased away from zero on average and that this bias increases as the a-priori pseudo-range sigma increases. We show that this problem does not occur for other receivers at NIST, even receivers of the same model or make. Next we review results for selecting a new primary receiver from others now at NIST, focusing on two desired properties: an average overlap bias close to zero using PPP, and a low code instability. We want at least one year of good data on a receiver before considering it as a replacement.
机译:先前的出版物[1]显示了当前NIST时间和频分主GPS接收器的问题,当用于精确点定位(PPP)的载波相位时间传输时。 我们确认,对于该接收器,重叠数据期间的边界不连续性倾向于平均远离零,并且这种偏差随着A-Priori伪系数的σ增加而增加。 我们表明NIST的其他接收器不会发生此问题,均匀的接收器或同一模型的接收器。 接下来,我们审查现在在NIST处从其他人选择新主接收器的结果,专注于两个所需的属性:使用PPP接近零的平均重叠偏置,以及低代码不稳定性。 在将其视为替代之前,我们希望在接收器上至少需要一年的良好数据。

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