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A Performance-Based Comparison of Deep-Space Navigation using Optical-Communication and Conventional Navigation Techniques: Small Body Missions

机译:基于性能的深空导航使用光学通信和常规导航技术的比较:小型车身任务

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Optical communications may be used in future NASA deep-space missions, resulting in much higher data transfer rates. Those optical communication links could also be used for navigation purposes. The performance of deep-space navigation for an asteroid flyby mission using ground-based opdcal tracking and conventional navigation techniques was investigated in this work. We present the results of variety of asteroid flyby scenarios including low phase and high phase approach angle flybys, one slow flyby in a Trojan tour mission, and also one slow flyby in a Psyche mission. In this task, four different types of observables were simulated, namely ground-based radiometric, spacecraft on-board optical, ground-based optical tracking of spacecraft (astrometry and 2-way range magnitude), and ground-based asteroid astrometry. Different combinations of these four types of observables were compared with currently in-practice ground-based radiometric/on-board optical measurements. The results showed that the ground-based optical tracking is promising and could be a potential candidate for future deep-space navigation. Precise astrometry is not possible for active comets.
机译:光通信可能会用于未来的NASA深空任务,从而导致更高的数据传输速率。这些光通信链路也可以用于导航目的。在这项工作中,研究了使用地面视点跟踪和常规导航技术对小行星飞越任务进行深空导航的性能。我们介绍了各种小行星飞越场景的结果,包括低相位和高相位进场角飞越,特洛伊木马巡回任务中的一次慢速飞越以及赛奇任务中的一次慢速飞越。在此任务中,模拟了四种不同类型的可观测对象,即基于地面的辐射测量,航天器的机载光学,航天器的基于地面的光学跟踪(天体测量和2向距离幅度)以及基于地面的小行星天体测量。将这四种类型的可观察物的不同组合与当前在实践中的地面辐射/车载光学测量进行了比较。结果表明,基于地面的光学跟踪是有前途的,并且可能是未来深空导航的潜在候选者。精确的天体测量对于活跃的彗星是不可能的。

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