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Real-time clock comparison and monitoring with multi-GNSS precise point positioning: GPS, GLONASS and Galileo

机译:使用多GNSS精确点定位的实时时钟比较和监控:GPS,Glonass和伽利略

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摘要

The precise point positioning (PPP) technique is widely used in time and frequency applications. Because of the real-time service (RTS) project of the International GNSS Service, we can use the PPP technique for real-time clock comparison and monitoring. As a participant in the RTS, the Centre National d'Etudes Spatiales (CNES) implements the PPPWIZARD (Precise Point Positioning with Integer and Zero-difference Ambiguity Resolution Demonstrator) project to validate carrier phase ambiguity resolution. Unlike the Integer-PPP (IPPP) of the CNES, fixing ambiguities in the post-processing mode, the PPPWIZARD operates in the real-time mode, which is also called real-time IPPP (RT-IPPP). This paper focuses on applying the RT-IPPP for real-time clock comparison and monitoring. We review the principle of real-time clock comparison and monitoring, and introduce the methodology of the RT-IPPP technique. The observations of GPS, GLONASS and Galileo were processed for the experiments. Five processing modes were provided in the experiment to analyze the benefits of ambiguity resolution and multi-GNSS. In the clock comparison experiment, the average reduction ratios of standard deviations with respect to the G PPP mode range from 9.7% to 35.0%. In the clock monitoring experiment, G PPP mode can detect clock jumps whose magnitudes are larger than 0.9 ns. The RT-IPPP technique with GRE PPP AR (G) mode allows for the detection of any clock jumps larger than 0.6 ns. For frequency monitoring, G PPP mode allows detection of frequency changes larger than 1.1 × 10~(-14). When the RT-IPPP technique is applied, monitoring with GRE PPP AR (G) mode can detect frequency changes larger than 6.1 × 10~(-15).
机译:精确点定位(PPP)技术广泛用于时间和频率应用。由于国际GNSS服务的实时服务(RTS)项目,我们可以使用PPP技术进行实时时钟比较和监控。作为RTS的参与者,中央国家D'Etudes Spatiales(CNES)实现了PPPWizard(具有整数和零差模糊的分辨率调查器)项目的PPPWizard(精确点定位)项目,以验证运营商相位歧义分辨率。与CNE的整数-PPP(IPPP)不同,修复后处理模式中的歧义,PPPWizard在实时模式下运行,该实时模式也称为实时IPPP(RT-IPPP)。本文侧重于应用RT-IPPP进行实时时钟比较和监控。我们回顾了实时时钟比较和监测的原则,并介绍了RT-IPPP技术的方法。处理GPS,Glonass和Galileo的观察结果进行实验。实验中提供了五种处理模式,分析了模糊分辨率和多GNS的益处。在时钟比较实验中,标准偏差相对于G PPP模式的平均降低比率为9.7%至35.0%。在时钟监测实验中,G PPP模式可以检测时钟跳跃,其幅度大于0.9 ns。具有GRE PPP AR(G)模式的RT-IPPP技术允许检测大于0.6ns的任何时钟跳跃。对于频率监测,G PPP模式允许检测大于1.1×10〜(-14)的频率变化。应用RT-IPPP技术时,使用GRE PPP AR(G)模式监控可以检测大于6.1×10〜(-15)的频率变化。

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