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Design and experiment of onboard laser time transfer in Chinese Beidou navigation satellites

机译:中国北斗导航卫星车载激光时间传输的设计与实验

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摘要

High-precision time synchronization between satellites and ground stations plays the vital role in satellite navigation system. Laser time transfer (LTT) technology is widely recognized as the highest accuracy way to achieve time synchronization derived from satellite laser ranging (SLR) technology. Onboard LTT payload has been designed and developed by Shanghai Astronomical Observatory, and successfully applied to Chinese Beidou navigation satellites. By using the SLR system, with strictly controlling laser firing time and developing LTT data processing system on ground, the high precise onboard laser time transfer experiment has been first performed for satellite navigation system in the world. The clock difference and relative frequency difference between the ground hydrogen maser and space rubidium clocks have been obtained, with the precision of approximately 300 ps and relative frequency stability of 10E-14. This article describes the development of onboard LTT payload, introduces the principle, system composition, applications and LTT measuring results for Chinese satellite navigation system.
机译:卫星和地面站之间的高精度时间同步在卫星导航系统中起着至关重要的作用。激光时间传输(LTT)技术被广泛认为是实现源自卫星激光测距(SLR)技术的时间同步的最高精度方法。机载LTT载荷是由上海天文台设计和开发的,已成功应用于中国北斗导航卫星。通过使用SLR系统,通过严格控制激光发射时间并在地面上开发LTT数据处理系统,世界上首次对卫星导航系统进行了高精度机载激光时间传输实验。已经获得了地面氢微波激射器和空间clock时钟之间的时钟差和相对频率差,精度约为300 ps,相对频率稳定性为10E-14。本文介绍了机载LTT有效载荷的发展,介绍了中国卫星导航系统的原理,系统组成,应用和LTT测量结果。

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