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On-board Galileo RAFS, current status and performances

机译:机载Galileo RAFS,当前状态和性能

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摘要

Galileo program is now approved by the European concerned government. The activities related to GSTBV2 experimental satellite as well as the implementation of the In Orbit validation phase have been started. Atomic clocks represent critical equipment for the satellite navigation system and clocks development has been continuously supported by ESA. The first related ESA contract for a RAFS (rubidium atomic frequency standard) was first initiated in 1996. RAFS is today one of the baseline clock technology for the Galileo navigation payload. This presentation gives a general overview of the RAFS development and evolution so far. It also provides updated information on the measurement results regarding clock frequency stability under simulated space environment as: i) vacuum coupled with temperature variation ii) electromagnetic perturbation iii) radiation variation (orbit cycle simulation) and total cumulated dose. Furthermore, measurement related to the capability of the clock to survive the vibration environment during launch without damage is addressed.
机译:伽利略计划现已获得欧洲有关政府的批准。与GSTBV2实验卫星有关的活动以及在轨验证阶段的实施已经开始。原子钟是卫星导航系统的关键设备,ESA不断支持时钟的开发。最早的RAA(rub原子频率标准)相关ESA合同于1996年启动。如今,RAFS已成为伽利略导航有效载荷的基准时钟技术之一。此演示文稿对RAFS的发展和演变进行了总体概述。它还提供了有关在模拟空间环境下时钟频率稳定性的测量结果的最新信息,这些信息包括:i)真空加上温度变化ii)电磁干扰iii)辐射变化(轨道周期模拟)和总累积剂量。此外,解决了与时钟在发射过程中经受振动环境而不受损坏的能力有关的测量。

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