论文标题

基于CISLUNAR小卫星地层的基于共链接辐射测量的性能分析

Performance Analysis of Crosslink Radiometric Measurement based Autonomous Orbit Determination for Cislunar Small Satellite Formations

论文作者

Turan, Erdem, Speretta, Stefano, Gill, Eberhard

论文摘要

太空技术的最新进展为小卫星提供了一个在Cislunar空间中推出的机会。但是,跟踪这些小卫星仍然取决于地面操作。考虑到昂贵的地面操作带来的挑战和用于小型卫星的船上电源有限的挑战,自主导航可能是一种可能的解决方案。关于Cislunar任务的自主导航方法已有多种研究。其中之一是联络,仅使用卫星间测量值提供了自主轨道测定解决方案。这项研究旨在根据cislunar小型卫星形成的自主轨道测定,以考虑测量类型的影响,测量准确性,偏差,形成几何学和网络拓扑的影响,对交联辐射测量的详细性能分析。这项研究表明,范围观测值比Cislunar空间中自主导航系统的范围率观察提供了更好的状态估计精度。从辐射测量值得出的视线角度测量并不能改善整体系统性能。此外,在高可观察的轨道配置中编队的选择可能不太精确。已经发现,高间隔的测量偏见和测量降低了整体系统性能。如果编队中有两个以上的航天器,则网格拓扑中的导航系统比集中式拓扑提供了更好的总体状态估计。

Recent advances in space technology provide an opportunity for small satellites to be launched in cislunar space. However, tracking these small satellites still depends on ground-based operations. Autonomous navigation could be a possible solution considering challenges presented by costly ground operations and limited onboard power available for small satellites. There have been various studies on autonomous navigation methods for cislunar missions. One of them, LiAISON, provides an autonomous orbit determination solution solely using inter-satellite measurements. This study aims at providing a detailed performance analysis of crosslink radiometric measurements based on autonomous orbit determination for cislunar small satellite formations considering the effects of measurement type, measurement accuracy, bias, formation geometry, and network topology. This study shows that range observations provide better state estimation accuracy than range-rate observations for the autonomous navigation system in cislunar space. Line-of-sight angle measurements derived from radiometric measurements do not improve the overall system performance. In addition, less precise crosslink measurement methods could be an option for formations in the high observable orbital configurations. It was found that measurement biases and measurements with high intervals reduce the overall system performance. In case there are more than two spacecraft in the formation, the navigation system in the mesh topology provided better overall state estimation than the centralized topology.

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