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Chapter 43 Use of the Global Navigation Satellite Systems for the Construction of the International Time Reference UTC

机译:第43章使用全球导航卫星系统建设国际时间基准UTC

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The International Bureau of Weights and Measures (BIPM) has the mandate to generate and distribute the international time scales Coordinated Universal Time (UTC) and International Atomic Time (TAI). About 400 atomic clocks belonging to national timing laboratories world-wide are used to generate UTC/TAI at the BIPM. Clock comparison is the key issue in the generation of any international time scale based on individual clock readings. Considering that in the case of UTC the clocks are located in remote laboratories, the use of time and frequency transfer techniques is necessary. Time transfer by Global Navigation Satellite System (GNSS), at present consisting mainly of the American GPS and the Russian GLONASS, constitutes the major technique used in the computation of UTC/TAI. To enable higher accuracy and robustness, a multi-system strategy is indispensable. Combined GPS and GLONASS time transfer has already been implemented at the BIPM with excellent results. In the near future it will be desirable to incorporate the Chinese BeiDou and the European Galileo systems in the computation of UTC/TAI. The GNSS time and frequency transfer is completed with another spatial technique, the Two-Way Satellite Time and Frequency Transfer (TWSTFT), that is completely independent of GNSS. In this paper, we present the applications of GNSS to accurate time and frequency transfer; we describe new data processing techniques such All in View (AV), Precise Point Positioning (PPP) and combined multi-system solutions; we analyze the corresponding uncertainties and introduce the BIPM's new projects.
机译:国际度量衡局(BIPM)的任务是生成和分发国际时标协调世界时(UTC)和国际原子时(TAI)。 BIPM使用世界各地国家计时实验室的大约400个原子钟来生成UTC / TAI。时钟比较是根据单个时钟读数生成任何国际时标的关键问题。考虑到在使用UTC的情况下,时钟位于远程实验室中,因此有必要使用时间和频率传输技术。目前主要由美国GPS和俄罗斯GLONASS组成的全球导航卫星系统(GNSS)进行的时移是计算UTC / TAI的主要技术。为了实现更高的准确性和鲁棒性,多系统策略是必不可少的。 BIPM已将GPS和GLONASS的时间传递结合在一起,并取得了优异的成绩。在不久的将来,将中国的北斗和欧洲的伽利略系统纳入UTC / TAI的计算将是可取的。 GNSS时间和频率传输是通过另一种空间技术完成的,即双向卫星时间和频率传输(TWSTFT),它完全独立于GNSS。在本文中,我们介绍了GNSS在精确的时间和频率传输中的应用。我们描述了新的数据处理技术,例如全视角(AV),精确点定位(PPP)和组合的多系统解决方案;我们分析了相应的不确定性,并介绍了BIPM的新项目。

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