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Precise Receiver Clock Offset Estimations According to Each Global Navigation Satellite Systems (GNSS) Timescales

机译:根据每个全球导航卫星系统(GNSS)时标的精确接收器时钟偏移估计

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Each GNSS constellation operates its own system times; namely, GPS system time (GPST), GLONASS system time (GLONASST), BeiDou system time (BDT) and Galileo system time (GST). They could be traced back to Coordinated Universal Time (UTC) scale and are aligned to GPST. This paper estimates the receiver clock offsets to three timescales: GPST, GLONASST and BDT. The two measurement scenarios use two identical multi-GNSS geodetic receivers connected to the same geodetic antenna through a splitter. One receiver is driven by its internal oscillators and another receiver is connected to the external frequency oscillators, caesium frequency standard, kept as the Thailand standard time scale at the National Institute of Metrology (Thailand) called UTC(NIMT). The three weeks data are observed at 30 seconds sample rate. The receiver clock offsets with respected to the three system time are estimated and analysed through the geodetic technique of static Precise Point Positioning (PPP) using a data processing software developed by Wuhan University - Positioning And Navigation Data Analyst (PANDA) software. The estimated receiver clock offsets are around 32, 33 and 18 nanoseconds from GPST, GLONASST and BDT respectively. This experiment is initially stated that each timescale is inter-operated with GPST and further measurements on receiver internal delay has to be determined for clock comparisons especially the high accuracy clock at timing laboratories.
机译:每个GNSS星座都运行自己的系统时间。 GPS系统时间(GPST),GLONASS系统时间(GLONASST),北斗系统时间(BDT)和Galileo系统时间(GST)。它们可以追溯到协调世界时(UTC)规模,并与GPST对齐。本文将接收器时钟偏移估计为三个时标:GPST,GLONASST和BDT。这两种测量方案使用两个通过分离器连接到同一大地天线的相同的多GNSS大地测量接收机。一个接收器由其内部振荡器驱动,另一个接收器与铯频率标准的外部频率振荡器相连,铯频率标准一直保存在泰国国家计量学院(泰国)称为UTC(NIMT)的泰国标准时标上。以30秒的采样率观察三周的数据。通过使用武汉大学开发的数据处理软件-定位和导航数据分析器(PANDA)软件,通过静态精确点定位(PPP)的大地测量技术,估计和分析了相对于三个系统时间的接收器时钟偏移。估计的接收器时钟偏移分别距GPST,GLONASST和BDT约32、33和18纳秒。最初,该实验表明,每个时标都与GPST互操作,并且必须确定接收器内部延迟的进一步测量以进行时钟比较,尤其是定时实验室的高精度时钟。

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