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A Precursor for a Crewed Mission to Near-Earth Asteroids: the SESAME Concept

机译:伴随着近地球小行星的备件:芝麻概念的前兆

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A crewed mission to Near-Earth Asteroids (NEAs) would maximize the quality and the amount of returned information regarding scientific, technological, mitigation or resource utilization purposes. To effectively prepare such a mission, a robotic precursor should visit the asteroid target(s) to ensure its relevance and safety. This study describes the architecture, trajectory and system design of a precursor mission. Using low-thrust propulsion for multi-rendezvous approaches to Near-Earth Asteroids (NEAs), this mission named SESAME (Spacecraft for Evaluation of Suitability of Asteroids for Manned Exploration) is the first multi-targets precursor mission towards NEAs. A comparison of the lists of accessible targets for human spaceflight with the trajectories from the 5~(th) Global Trajectory Optimization Competition (GTOC5) is presented. GTOC5 trajectories are highly optimized, low thrust trajectories reaching multiple (up to 18) NEAs. However, the low correlation between the lists makes them unusable for a precursor mission and a new trajectory was computed. The outcome was a trajectory with a departure in 2023 reaching seven asteroids in less than 10 years (all in the top 25 of the Near-Earth Object Human Space Flight Accessible Targets Study (NHATS)). To comply with this trajectory, the final design focused on payload, propulsion, communication and power subsystems resulted in a precursor spacecraft reaching the first five targets of the trajectory: 2001 QJ142, 2000 SG344, 2009 OS5, 2007 YF and 1999 AO10. SESAME carries five 27.6 kg landers each having a short term observation function and a long term beacon function to guide the future crew. The spacecraft is powered by two 17 m~2 solar arrays and its propulsion system consists of three RIT-22 ion engines (one redundant). It uses Ka-band for the downlink communication to Earth. The total fuel mass of 576 kg consists of 451 kg of xenon for the ion propulsion and 125 kg of bi-propellant for the attitude control thrusters. The total launch mass is 1571 kg, well within the capabilities of current launchers. Finally, the results of a sensitivity analysis of the design evaluating the impact of changes in the ?V required for the maneuvers at each target, in the power supply and in the dry mass are presented. SESAME represents a feasible spacecraft capable of reaching five of the most promising NEAs in less than seven years, with an average of five months of operation at each target.
机译:对近地球小行星(BEES)的机组人员将最大限度地提高科学,技术,缓解或资源利用目的的质量和返回信息。为了有效准备这样的使命,机器人前体应访问小行星目标,以确保其相关性和安全性。本研究描述了前体任务的架构,轨迹和系统设计。利用低推力推进用于近地球近地区的近地区小行星(猫鼬),这个任务名为Sesame(航天器,用于评估Serned探索的小行星适用性)是对怀阿斯的第一个多目标前体任务。提出了从5〜(Th)全局轨迹优化竞争(GTOC5)的轨迹的人类空间的可访问目标列表的比较。 GTOC5轨迹高度优化,低推力轨迹达到多个(最多18岁)。然而,列表之间的低相关使它们无法使用前体任务,并且计算了新的轨迹。结果是在距离2023年的出发轨迹,达到七个小行星,不到10年(近25个近地上物体人类空间飞行可访问目标研究(NHATS))。为了遵守这种轨迹,最终设计专注于有效载荷,推进,通信和功率子系统导致前兆航天器到达轨迹的前五个目标:2001 QJ142,2000 SG344,2009 OS5,2007 YF和1999 AO10。芝麻携带五个27.6公斤着陆器,每个登陆函数都有短期观察功能和长期标牌功能,以指导未来的工作人员。航天器由两个17 m〜2太阳阵列供电,其推进系统由三个RIT-22离子发动机(一个冗余)组成。它使用KA波段进行地球的下行链路通信。 576千克的总燃料质量由451千克氙的离子推进和125kg双推进剂组成,用于姿态控制推进器。总发射质量为1571千克,良好的发射器的能力。最后,提出了对设计的敏感性分析的敏感性分析,评估了每个目标在电源和干肿块中的机动仪所需的变化的影响。芝麻代表了一个可行的航天器,能够在不到七年的时间内到达最有前途的猫鼬的可行的航天器,平均每目标的5个月运营。

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