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Design of a very High Sensitivity Acquisition System for a Space GNSS Receiver

机译:用于空间GNSS接收器的非常高灵敏度采集系统的设计

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Increasing the GNSS receiver sensitivity and robustness in very harsh environments has become a central topic for the GNSS community. This paper addresses the design of a very High Sensitivity (HS) acquisition scheme for weak GNSS signal detection down to 5/10 dB-Hz in the particular space environment of the Lunar Low Orbit. A theoretical analysis for the determination of optimal extended coherent integration time and non-coherent accumulations allowing the achievement of pre-defined acquisition metrics will be presented and then validated by means of simulations. Complete data navigation bits and secondary code synchronization achieved thanks to the use of external aiding sources or self-assistance techniques is considered along the analysis which will provide results for weak GNSS signal acquisition in the GPS L1/L5 and Galileo E1/E5 frequency bands. Presence of a Doppler aiding source is considered and a detailed study on the required Doppler aiding accuracy is also presented.
机译:在非常恶劣的环境中增加GNSS接收器灵敏度和鲁棒性已成为GNSS社区的核心主题。本文解决了在月球低轨道的特定空间环境中为5/10 dB-Hz的弱GNSS信号检测的非常高的灵敏度(HS)采集方案的设计。允许允许允许实现预定义的采集度量的最佳扩展相干集成时间和非相干累加的理论分析,然后通过模拟验证。由于使用外部辅助源或自辅助技术来考虑完整的数据导航比特和辅助代码同步,其沿着分析,这将为GPS L1 / L5和GALILEO E1 / E5频带中的弱GNSS信号采集提供弱GNSS信号采集的结果。考虑了多普勒防护源的存在,并且还呈现了对所需多普勒的详细研究。

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