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Real-time linked common-view time transfer for monitoring GNSS system time differences

机译:实时链接的通用视图时间传输,用于监视GNSS系统时差

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摘要

This paper presents results obtained by conducting real-time linked common-view (CV) Global Navigation Satellite System (GNSS) time transfer between stations that are supposed to maintain various GNSS system times including those of GPS and Galileo. The distance between those stations is typically more than 5000 km and the conventional CV GPS time transfer may not be feasible for such long-distance time transfer. We used the real-time linked CV time transfer technique to monitor the GNSS system time differences, and the time links examined in this study are the USNO-PTB link for the GPS-Galileo system time difference and the USNO-NICT link for the GPS-QZSS system time difference. The performance of the developed time transfer method was assessed by comparing against other time transfer solutions such as TWSTFT. Finally, global closure was formed to examine the inherent noise level of the method in a self-sufficient way. Results showed that the real-time linked CV time transfer solution yields sub-nanosecond-level agreement with the reference solutions including TWSTFT, and its frequency stability is generally at the level of (3-4) × 10~(-15) in terms of the modified Allan deviation at the averaging time of one day, which seems to be sufficient to support civil interoperability between different GNSSs for sub-metre-level accuracy.
机译:本文介绍了通过在应该保持各种GNSS系统时间(包括GPS和Galileo)的站点之间进行实时链接的通用视图(CV)全球导航卫星系统(GNSS)时间传输而获得的结果。这些站之间的距离通常大于5000 km,而传统的CV GPS时间传输可能不适用于这种长距离时间传输。我们使用了实时链接的CV时间传输技术来监视GNSS系统的时差,本研究中研究的时间链接是GPS-伽利略系统时差的USNO-PTB链接和GPS的USNO-NICT链接-QZSS系统时差。通过与其他时间转移解决方案(例如TWSTFT)进行比较,评估了开发的时间转移方法的性能。最后,形成了整体封闭,以一种自给自足的方式检查该方法的固有噪声水平。结果表明,实时链接的CV时间传输解决方案与包括TWSTFT的参考解决方案产生亚纳秒级的协议,并且其频率稳定性通常在(3-4)×10〜(-15)的水平上平均一天的修正Allan偏差的变化,这似乎足以支持不同GNSS之间的民用互操作性,以达到亚米级的精度。

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