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Temporal Stability of GPS Transmitter Group Delay Variations

机译:GPS发射机群时延变化的时间稳定性

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摘要

The code observable of global navigation satellite systems (GNSS) is influenced by group delay variations (GDV) of transmitter and receiver antennas. For the Global Positioning System (GPS), the variations can sum up to 1 m in the ionosphere-free linear combination and thus can significantly affect precise code applications. The contribution of the GPS transmitters can amount to 0.8 m peak-to-peak over the entire nadir angle range. To verify the assumption of their time-invariance, we determined daily individual satellite GDV for GPS transmitter antennas over a period of more than two years. Dual-frequency observations of globally distributed reference stations and their multipath combination form the basis for our analysis. The resulting GPS GDV are stable on the level of a few centimeters for C1, P2, and for the ionosphere-free linear combination. Our study reveals that the inconsistencies of the GDV of space vehicle number (SVN) 55 with respect to earlier studies are not caused by temporal instabilities, but are rather related to receiver properties.
机译:全球导航卫星系统(GNSS)的可观察代码受发射机和接收机天线的群时延变化(GDV)的影响。对于全球定位系统(GPS),在无电离层的线性组合中,变化的总和为1 m,因此会严重影响精确的代码应用。在整个天底角范围内,GPS发射器的峰峰值贡献为0.8 m。为了验证其时不变性的假设,我们确定了两年以上GPS发射机天线的每日单个卫星GDV。全球分布参考站的双频观测及其多径组合构成了我们分析的基础。对于C1,P2和无电离层线性组合,所得的GPS GDV稳定在几厘米的水平上。我们的研究表明,与早期研究相比,航天器编号(SVN)55的GDV不一致不是由时间不稳定引起的,而是与接收器的特性有关。

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