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Asteroid Redirection Mission Evaluation Using Multiple Landers

机译:小行星重定向任务评估使用多个着陆器

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In this paper, a low-thrust tugboat redirection method is assessed using multiple spacecraft for a target range of small near-Earth asteroids. The benefits of a landed configuration of tugboat spacecraft in formation are examined for the redirection of a near-Earth asteroid. The tugboat method uses a gimballed thruster with a highly collimated ion beam to generate a thrust on the asteroid. The target asteroid range focuses on near-Earth asteroids smaller than 150+ m in diameter, and carbonaceous (C-type) asteroids, due to the volatiles available for in-situ utilization. The assessment focuses primarily on the three key parameters, i.e., the asteroid mass redirected, the timeframe for redirection, and the overall system cost. An evaluation methodology for each parameter is discussed in detail, and the parameters are employed to determine the expected return and feasibility of the redirection mission. The number of spacecraft employed is optimized along with the electrical power needed for each spacecraft to ensure the highest possible return on investment. A discussion of the optimization results and the benefits of spacecraft formation for the tugboat method are presented.
机译:在本文中,使用多个航天器进行评估低推力拖船重定向方法,用于小近地球小行星的目标范围。检查拖船航天器的着陆配置在形成中的效益,用于重定向近地球小行星。拖船方法使用具有高度准直的离子束的Gimballed推进器,以在小行星上产生推力。目标小行星范围重点关注直径小于150米的近地区的小行星,并且由于可用于原位利用的挥发物,碳质(C型)小行星。评估主要侧重于三个关键参数,即小行星质量重定向,重定向的时间帧以及整体系统成本。详细讨论了每个参数的评估方法,采用参数来确定重定向任务的预期回报和可行性。所采用的航天器的数量随着每个航天器所需的电力优化,以确保最高的投资回报。提出了对拖轮法的优化结果和航天器形成的益处。

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