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Use of weak GNSS signals in a mission to the moon

机译:在登月任务中使用微弱的GNSS信号

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According to the European Space Agency (ESA) Lunar Exploration program, the use of GNSS weak-signal navigation in future lunar exploration missions has the potential to increase the robustness of the navigation during all mission phases and improve considerably its autonomy. The major objectives of the ESA Moon-GNSS project have been to determine the feasibility of using GNSS (GPS/Galileo) weak-signal technology in future lunar missions to improve the navigation performance in terms of accuracy, cost reduction and autonomy. The Moon mission scenario is very challenging for the GNSS signals processing: less visibility compared to an Earth-based receiver, low signal strength, poor satellite geometry, Earth and Moon signal occultation, and spacecraft dynamics. The identification of the Moon-GNSS navigation receiver requirements for the upcoming lunar exploration missions has been performed. The impact of the receiver requirements on the Moon-GNSS receiver module architecture and algorithms has been analyzed (weak signal processing, filtering and navigation), including an overview of the state of the art space-borne GNSS receivers. Besides, the synergies between GNSS signalavigation processing and other navigation sensors (i.e. accelerometers, optical camera, laser altimeter) have been analyzed, using the state of the art of sensors integration for space missions. A demonstrator of the weak-signal Moon-GNSS navigation has been designed and implemented, showing the main functional and performance capabilities of the Moon-GNSS receiver. A test campaign representative of a real Moon-GNSS mission has been carried out, covering all the mission phases of the real mission conditions in terms of dynamics and signal disturbances, for different configurations: standard sensors, standard sensors plus GNSS and stand-alone GNSS navigation.
机译:根据欧洲航天局(ESA)的月球探测计划,在未来的月球探测任务中使用GNSS弱信号导航有可能在所有任务阶段提高导航的鲁棒性,并大大改善其自主性。 ESA Moon-GNSS项目的主要目标是确定在未来的月球任务中使用GNSS(GPS / Galileo)弱信号技术以提高准确性,降低成本和自主性方面的导航性能的可行性。月球任务场景对于GNSS信号处理非常具有挑战性:与基于地球的接收器相比,能见度较低,信号强度低,卫星几何形状差,地球和月球信号掩星以及航天器动力学。已经确定了即将进行的月球探索任务的Moon-GNSS导航接收器需求。已经分析了接收机要求对Moon-GNSS接收机模块架构和算法的影响(弱信号处理,滤波和导航),包括对最新技术的星载GNSS接收机的概述。此外,利用太空任务传感器集成的最新技术,分析了GNSS信号/导航处理与其他导航传感器(例如,加速度计,光学相机,激光高度计)之间的协同作用。已经设计并实现了微信号Moon-GNSS导航的演示器,展示了Moon-GNSS接收机的主要功能和性能。已经进行了代表实际月球GNSS任务的测试活动,涵盖了针对不同配置的动力学和信号干扰方面的实际任务条件的所有任务阶段,包括不同的配置:标准传感器,标准传感器以及GNSS和独立GNSS导航。

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