首页> 外文会议>Frequency and Time Forum, 2004. EFTF 2004 >Comparison of instrumental and empirical station timing biases for a set of ashtech Z12T GPS receivers
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Comparison of instrumental and empirical station timing biases for a set of ashtech Z12T GPS receivers

机译:一套ashtech Z12T GPS接收机的仪器站和实验站定时偏差的比较

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Station timing biases have been determined by two different methods for a set of Ashtech Z12T geodetic GPS receivers located at timing laboratories. The timing biases account for the internal delays within the geodetic GPS receiver and antenna hardware, including the combined effects at both the L1 and L2 frequencies, as well as the intra-laboratory offset to the local source of UTC(k). The direct method uses a standard Z12T unit from the Bureau International des Poids et Mesures (BIPM), which was previously calibrated using absolute methods with an estimated accuracy of ∼3.5 ns. It is deployed to differentially calibrate laboratory receivers, each measurement having an estimated uncertainty of ∼1.6 ns. The second, empirical method relies upon mutual observations of GPS time, as reported in BIPM''s monthly Circular T and as observed by the International GPS Service (IGS), to extend the previously determined calibration bias of each lab''s main TAI time transfer system differentially to the collocated geodetic receiver. For those stations where the geodetic system uses a frequency standard closely related to the local UTC(k) realization, we find calibration biases can be determined with repeatabilities in the range of one to a few ns. This method allows station timing biases to be monitored continuously, in near real-time, without disruption or need of any special local measurements. Results using both methods have been compared for several timing labs. We find differences of a few ns, except in two cases where there are questions related to local measurement procedures, which is roughly consistent with the overall error budgets for the calibration methods. In an operational time transfer setting, both methods can be usefully applied in complementary ways.
机译:已经通过两种不同的方法为位于定时实验室的一组Ashtech Z12T大地测量GPS接收机确定了站的定时偏差。时序偏差说明了大地测量GPS接收器和天线硬件内部的内部延迟,包括L1和L2频率上的综合影响,以及实验室内部对UTC(k)源的偏移。直接方法使用国际局的标准Z12T单位(BIPM),该单位先前已使用绝对方法进行了校准,估计精度约为3.5 ns。它用于差分校准实验室接收器,每次测量的估计不确定度约为1.6 ns。第二种经验方法依赖于BIPM每月通报T和国际GPS服务(IGS)观察到的GPS时间的相互观察,以扩展先前确定的每个实验室主要TAI的校准偏差。时间传输系统与并置的大地测量接收器不同。对于大地测量系统使用与当地UTC(k)实现紧密相关的频率标准的那些站,我们发现可以以1到几ns范围内的可重复性确定校准偏差。这种方法允许近实时地连续监测站定时偏差,而无需中断或需要任何特殊的本地测量。使用两种方法的结果已在多个计时实验室中进行了比较。我们发现差异只有ns,除了在两种情况下存在与本地测量程序有关的问题外,这与校准方法的总体误差预算大致相符。在操作时间转移设置中,两种方法都可以以互补的方式有用地应用。

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