Simultaneously Adjusting Deployment Strategies for Mega-Constellations Using Low-Thrust Maneuvers

Huang Pu, Guangwei Wen, Zhaokui Wang
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Abstract

Deploying a constellation can be costly and inefficient. The ultimate goal is to position multiple satellites into designated orbital slots with the fewest launches and lowest energy consumption. This paper presents a method for simultaneous right ascension of the ascending node (RAAN) and argument of latitude (AOL) adjustments using continuous low thrust. Firstly, how changes in the semimajor axis and inclination affect the RAAN and the AOL is analyzed. A control method is proposed, and all satellites are sequentially placed from the injection orbit to the working orbit at specific time intervals. Because the RAAN and AOL are coupled with each other, a priority control strategy is introduced. This strategy ensures that the AOL is accurately satisfied within the time between each maneuver. Next, equations that correlate the RAAN and the AOL with the orbit inclination deviation and maneuver interval time are established. By studying the maneuver time intervals and inclination compensations, a highly accurate synchronized deployment scheme can be obtained. A simulation experiment based on the OneWeb constellation is carried out. In the simulation, 80 satellites are launched by just one rocket. By employing the proposed method, the constellation is successfully deployed. Results from the simulation verified the effectiveness of the proposed algorithm, which may be employed for rapid deployment of a mega-constellation in the future.
利用低推力机动同时调整巨型恒星的部署策略
部署一个星座可能成本高昂且效率低下。最终目标是以最少的发射次数和最低的能耗将多颗卫星定位到指定的轨道位置。本文介绍了一种利用连续低推力同时调整上升节点右旋(RAAN)和纬度参数(AOL)的方法。首先,分析了半长轴和倾角的变化如何影响 RAAN 和 AOL。提出了一种控制方法,并按特定时间间隔将所有卫星从注入轨道依次置于工作轨道。由于 RAAN 和 AOL 相互耦合,因此引入了优先控制策略。该策略可确保在每次机动之间的时间内准确满足 AOL 的要求。接下来,建立了 RAAN 和 AOL 与轨道倾角偏差和机动间隔时间的相关方程。通过研究机动时间间隔和倾角补偿,可以获得高精度的同步部署方案。基于 OneWeb 星座进行了模拟实验。在仿真中,仅用一枚火箭就发射了 80 颗卫星。通过采用所提出的方法,该星座得以成功部署。模拟结果验证了所提算法的有效性,该算法可用于未来超大型星座的快速部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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