射电天文卫星群月球轨道设计

Sung-Hoon Mok, Jian Guo, E. Gill, R. Rajan
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引用次数: 2

摘要

利用卫星群进行射电天文研究一直是轨道低频阵列(OLFAR)项目的重点。由分布式卫星构建的直径100公里的孔径阵列将能够在10兆赫频率下提供优于1弧分空间分辨率的天空图。然而,目前还没有一种能够保证星间安全距离和相对轨道稳定性的群卫星轨道设计策略。本文提出了一种新的OLFAR轨道设计方法。给出了基于三个代数约束的确定性解,这三个代数约束代表了三个轨道设计要求:避免碰撞、最大基线率和uw空间覆盖。此外,还提出了在任务生命周期内进行观测规划的思想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lunar Orbit Design of a Satellite Swarm for Radio Astronomy
Employing a satellite swarm for radio astronomy has been continuously addressed in the Orbiting Low Frequency ARray (OLFAR) project. A 100 km diameter of aperture array constructed by distributed satellites will be able to provide sky maps of better than 1 arc-minute spatial resolution at 10 MHz. However, an orbit design strategy for the swarm satellites that ensures safe intersatellite distances and relative orbit stability has not yet been developed. In this paper, a new method for OLFAR orbit design is proposed. A deterministic solution is presented based on three algebraic constraints derived here, which represent three orbit design requirements: collision avoidance, maximum baseline rate, and uvw-space coverage. In addition, an idea for observation planning over the mission lifetime is presented.
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