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The In-Orbit performances of GIOVE clocks

机译:GIOVE时钟的在轨性能

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摘要

The Galileo In-Orbit Validation Element (GIOVE) is an experiment led by the European Space Agency (ESA) aimed at supporting the on-going implementation of Galileo, the European global navigation satellite system (GNSS). Among the objectives of the GIOVE Mission are the validation and characterization of the on-board clock technologies. The current baseline technologies for on-board clocks are the rubidium atomic frequency standard (RAFS) and the passive hydrogen maser (PHM). Both technologies have been validated and qualified on ground and are now being further validated in a representative in-orbit environment aboard 2 spacecrafts, GIOVE-A and GIOVE-B. This paper presents the results obtained in the frame of the GIOVE experimentation. The behavior and performances of the clock technologies on board both spacecrafts has been investigated and analyzed in terms of operation, frequency stability, and clock prediction error after more than 3 years of operation for GIOVE-A and almost one year for GIOVE-B. In addition, relativistic frequency shifts of GIOVE spacecrafts have been investigated.
机译:伽利略在轨验证元件(GIOVE)是由欧洲航天局(ESA)领导的一项实验,旨在支持正在进行的欧洲全球导航卫星系统(GNSS)的实施。 GIOVE任务的目标之一是对车载时钟技术进行验证和表征。当前用于车载时钟的基准技术是the原子频率标准(RAFS)和无源氢maser(PHM)。两种技术均已在地面上进行了验证和认证,现在正在2个航天器GIOVE-A和GIOVE-B的代表性在轨环境中进一步进行验证。本文介绍了在GIOVE实验框架中获得的结果。在对GIOVE-A进行了3年以上,对GIOVE-B进行了将近1年的研究之后,对这两种航天器上的时钟技术的行为和性能进行了研究,分析,包括操作,频率稳定性和时钟预测误差。此外,还研究了GIOVE航天器的相对论性频移。

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