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Estimating Empirical Station Timing Biases using IGS Clock Products

机译:使用IGS时钟产品估算实证站时序偏差

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We demonstrate a method to determine empirical station timing biases for geodetic receivers located at timing laboratories. Mutual observations of GPS time, as reported by the Bureau International des Poids et Mesures (BIPM) in its Circular T and as observed by the International GPS Service (IGS), are used together with the Circular T offsets of the lab timescales (UTC-UTC_(i)). This method effectively extends the previously determined calibration bias of a lab's main time transfer system differentially to a colocated geodetic receiver system, without need of any additional local measurements. The empirical biases include both the internal delays within the geodetic GPS receiver/antenna hardware as well as the intra-laboratory offset to the source of UTC_(i). When applied to the subset of IGS stations located at timing labs, we find that useful results can be obtained provided that the geodetic system uses a frequency standard closely related to the local UTC_(i) realization and that the GPS receiver does not reset its internal clock too frequently. We find daily RMS repeatabilities in some cases of about 1 to 2 ns over periods up to about a year. Given sufficient available data, the mean station bias can be estimated from a single monthly Circular T update to the 1 ns level, which is smaller than the uncertainty in current absolute calibrations. This method can be used to validate laboratory calibration measurements for the geodetic systems and to continuously monitor intra-laboratory calibration stability without disrupting normal operations. It can also be exploited to improve the near real-time steering of the IGS timescale to track UTC more closely.
机译:我们展示了一种确定位于定时实验室的大地测量接收器的经验站定时偏差的方法。由局国际GPS DES POIDS et Mesures(BIPM)报告的GPS时间的相互观察,并由国际GPS服务(IGS)观察,与实验室时间尺度的循环抵消(UTC- UTC_(i))。该方法有效地扩展了实验室的主时间转移系统的先前确定的校准偏压,差别地到了光学的大地测量系统,而无需任何额外的局部测量。经验偏差包括大地测量GPS接收器/天线硬件内的内部延迟以及对UTC_(i)源的实验室偏移。当应用于位于时序实验室的IGS站的子集时,我们发现可以获得有用的结果,条件是大地测量系统使用与本地UTC_(i)实现密切相关的频率标准,并且GPS接收器不会重置其内部时钟太频繁了。我们在某些情况下发现每日RMS重铸,大约一年的时间约为1至2个。鉴于足够的可用数据,可以从单个月度循环T更新到1 ns级别的平均站偏置,这小于当前绝对校准中的不确定性。该方法可用于验证大地测量系统的实验室校准测量,并连续监测实验室内的校准稳定性,而不会破坏正常操作。它也可以利用它来改善IGS时间尺度的近乎实时转向,以更密切地跟踪UTC。

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