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GNSS/INS/Star Tracker Integrated Navigation System for Earth-Moon Transfer Orbit

机译:GNSS / INS / Star跟踪器综合导航系统用于地球转移轨道

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Over the last few years, new Global Navigation Satellite System (GNSS) applications have emerged that go far beyond the original objectives of GNSS which was providing position, velocity and timing (PVT) services for land, maritime, and air applications. Indeed, today, GNSS is used in Low Earth Orbit (LEO) for a wide range of applications such as real-time navigation, formation flying, precise time synchronization, orbit determination and atmospheric profiling. GNSS, in fact, can maximize the autonomy of a spacecraft and reduce the burden and costs of network operations. For this reason, there is a strong interest to also use GNSS for High Earth Orbit or Highly Elliptical Orbit (HEO) missions. However, the use of GNSS for HEO up to Moon altitudes is still new, and terrestrial GNSS receivers have not been designed to cope with the space environment which affects considerably the GNSS receiver performance and the GNSS solution (e.g. navigation solution). The goal of our research is therefore to develop a proof of concept of a spaceborne GNSS receiver for Earth-Moon transfer orbits, assisted by Inertial Navigation System (INS), a Star Tracker and an orbital forces model to increase the navigation accuracy and to achieve the required sensitivity.
机译:在过去几年中,新的全球导航卫星系统(GNSS)应用程序已经出现远远超出了GNSS的原始目标,该目的是为土地,海上,航空应用提供的位置,速度和时序(PVT)服务。实际上,当今,GNSS在低地球轨道(LEO),用于宽范围的应用,例如实时导航,编队飞行,精确的时间同步,轨道确定和大气层仿形使用。事实上,GNSS可以最大限度地提高航天器的自主权,并降低网络运营的负担和成本。因此,对高地轨道或高度椭圆轨道(HEO)任务使用GNSS,有很大的兴趣。然而,使用GNSS对于Heo到Hoon Altitudes仍然是新的,并且陆地GNSS接收器尚未设计用于应对空间环境,这些环境非常影响GNSS接收器性能和GNSS解决方案(例如导航解决方案)。因此,我们的研究的目标是制定用于地球传输轨道的星球传输轨道的概念证据,由惯性导航系统(INS),星形跟踪器和轨道力模型辅助,以提高导航精度并实现所需的灵敏度。

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