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Ground Environment Test and In-Orbit Performance Verification of Spaceborne Cesium Atomic Clock

机译:地面环境测试和空间铯原子钟的轨道性能验证

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Spaceborne cesium atomic clock with magnetic selectors (SCAC) has been used in the global navigation satellite system (GNSS), which can not only improve the positioning accuracy, but also enhance the ability of autonomous operation. So a SCAC product is very favored, but it is very difficult to manufacture. Until November 2019, among the world's four largest GNSS, only GPS in the U.S. and GLONASS in Russia are equipped with the SCACs. But this situation has been changed now, the first SCAC product in China has been developed by improving its cesium beam tube, frequency standard circuit etc. based on the prototype [1]. The product has been carried on the Beidou navigation satellite and its working state is stable in orbit at present. The analysis results of on-ground and in-orbit data show that the key performance indexes such as frequency accuracy, long-term stability and frequency drift rate could meet the application requirements, and that the product has good space environment adaptability. This paper discusses on the ground environmental test items, methods, conclusions and in-orbit verification related to the product, and summarizes some achievements and experiences in tackling the key technology of the SCAC environmental adaptability, which is very helpful for improving the design ability in space environmental adaptability of atomic clocks.
机译:具有磁选器(SCAC)的星载铯原子钟已用于全球导航卫星系统(GNSS),这不仅可以提高定位精度,而且还可以提高自主操作的能力。因此,SCAC产品非常有利,但制造非常困难。直到2019年11月,在世界上四个最大的GNSS中,只有美国和Glonass在俄罗斯的GPS都配备了SCACS。但现在这种情况发生了变化,这是通过改善其基于原型的铯束管,频率标准电路等来开发了中国的第一个SCAC产品。该产品已在北欧导航卫星上进行,其工作状态在目前轨道稳定。地面和轨道数据的分析结果表明,频率精度,长期稳定性和频率漂移率等关键性能指标可以满足应用要求,并且该产品具有良好的空间环境适应性。本文讨论了与产品相关的地面环境测试项目,方法,结论和轨道核查,并总结了解决SCAC环境适应性的关键技术方面的一些成就和经验,这对提高设计能力非常有帮助太空环境适应性原子钟。

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