Casini Stefano, Turan Erdem, Cervone Angelo, Monna Bert, Visser Pieter
Space Engineering, Delft University of Technology, Delft, 2629, HS, The Netherlands.
Phosphoenix, Amsterdam, 1105, AZ, The Netherlands.
Sci Rep. 2023 Sep 27;13(1):16253. doi: 10.1038/s41598-023-43339-9.
This manuscript aims to present and evaluate the applicability of combining optical line-of-sight (LoS) navigation with crosslink radiometric navigation for deep-space cruising distributed space systems. To do so, a set of four distributed space systems architectures is presented, and for each of those, the applicability of the combination is evaluated, comparing it to the baseline solutions, which are based on only optical navigation. The comparison is done by studying the performance in a circular heliocentric orbit in seven different time intervals (ranging from 2024 to 2032) and exploiting the observation of all the pairs of planets from Mercury to Saturn. The distance between spacecraft is kept around 200 km. Later, a NEA mission test case is generated in order to explore the applicability to a more realistic case. This analysis shows that the technique can also cope with a variable inter-satellite distance, and the best performance is obtained when the spacecraft get closer to each other.
本手稿旨在介绍和评估将光学视线(LoS)导航与交联辐射测量导航相结合用于深空巡航分布式空间系统的适用性。为此,提出了一组四种分布式空间系统架构,并针对每种架构评估了这种组合的适用性,将其与仅基于光学导航的基线解决方案进行比较。通过研究在七个不同时间间隔(从2024年到2032年)的圆形日心轨道上的性能,并利用从水星到土星的所有行星对的观测来进行比较。航天器之间的距离保持在200公里左右。随后,生成了一个近地小行星任务测试案例,以探索该技术对更现实情况的适用性。该分析表明,该技术也能应对可变的卫星间距离,并且当航天器彼此靠近时可获得最佳性能。