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TIME AND FREQUENCY TRANSFER COMBINING GLONASS AND GPS DATA

机译:结合GLONASS和GPS数据的时间和频率传输

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Measurements from Global Navigation Satellite Systems (GNSS) have been used since the eighties to perform precise and accurate Time and Frequency Transfer (TFT). Two main approaches are used presently: the Common View or All in View based on the Common GPS GLONASS Time Transfer Standard (CGGTTS) and the Precise Point Positioning (PPP). Concerning the CGGTTS approach, in order to allow the use of GLONASS data from geodetic-type receivers providing only raw data in RINEX format, the R2CGGTTS software developed initially for GPS at the Royal Observatory of Belgium (ROB) was updated. The GLONASS navigation files are used for the determination of satellite clocks and positions, and the computation procedure to get the CGGTTS data from the pseudorange measurements is applied similarly as for the GPS satellites. In parallel, we also upgraded the PPP software Atomium developed at the ROB to allow the use of the Russian GLONASS constellation. The clock solution is then obtained through the analysis of dual-frequency carrier-phase and pseudorange measurements. This study combines GPS and GLONASS observations in PPP in order to determine the added value of the GLONASS data in geodetic time transfer.
机译:从八十年代开始就使用了来自全球导航卫星系统(GNSS)的测量来执行精确而准确的时间和频率传输(TFT)。当前使用两种主要方法:基于通用GPS GLONASS时间传输标准(CGGTTS)和精确点定位(PPP)的通用视图或全视角。关于CGGTTS方法,为了允许使用仅提供RINEX格式原始数据的大地测量型接收机的GLONASS数据,对比利时皇家天文台(ROB)最初为GPS开发的R2CGGTTS软件进行了更新。 GLONASS导航文件用于确定卫星时钟和位置,从GPS伪距测量中获取CGGTTS数据的计算过程与GPS卫星类似。同时,我们还升级了ROB开发的PPP软件Atomium,以允许使用俄罗斯GLONASS星座。然后,通过分析双频载波相位和伪距测量来获得时钟解决方案。这项研究结合了PPP中的GPS和GLONASS观测资料,以确定大地时间传递中GLONASS数据的附加值。

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