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Advanced concept for a crewed mission to the Martian moons

机译:进行火星卫星载人飞行任务的高级概念

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摘要

This paper presents the conceptual design of the IMaGInE (Innovative Mars Global International Exploration) Mission. The mission's objectives are to deliver a crew of four astronauts to the surface of Deimos and perform a robotic exploration mission to Phobos. Over the course of the 343 day mission during the years 2031 and 2032, the crew will perform surface excursions, technology demonstrations, In Situ Resource Utilization (ISRU) of the Martian moons, as well as site reconnaissance for future human exploration of Mars. This mission design makes use of an innovative hybrid propulsion concept (chemical and electric) to deliver a relatively low-mass reusable crewed spacecraft (approximately 100 mt) to cis-martian space. The crew makes use of torpor which minimizes launch payload mass. Green technologies are proposed as a stepping stone towards minimum environmental impact space access. The usage of beamed energy to power a grid of decentralized science stations is introduced, allowing for large scale characterization of the Martian environment. The low-thrust outbound and inbound trajectories are computed through the use of a direct method and a multiple shooting algorithm that considers various thrust and coast sequences to arrive at the final body with zero relative velocity. It is shown that the entire mission is rooted within the current NASA technology roadmap, ongoing scientific investments and feasible with an extrapolated NASA Budget. The presented mission won the 2016 Revolutionary Aerospace Systems Concepts - Academic Linkage (RASC-AL) competition.
机译:本文介绍了IMaGInE(火星全球创新国际探索)任务的概念设计。该任务的目的是将4名宇航员送入Deimos的地面,并执行对Phobos的机器人探索任务。在2031年和2032年的343天任务中,机组人员将进行表面游览,技术演示,火星卫星的原位资源利用(ISRU)以及现场勘测,以供将来人类对火星进行探索。该任务设计利用创新的混合推进概念(化学和电力),将质量相对较低的可重复使用的载人航天器(约100公吨)运送到顺式火星人太空。机组人员使用了火炬,可以最大程度地降低发射有效载荷的质量。提出了绿色技术,作为迈向最低环境影响空间的垫脚石。引入了使用束状能量为分散的科学站网格供电的方法,从而可以对火星环境进行大规模表征。通过使用直接方法和考虑多种推力和滑行序列以零相对速度到达最终物体的多重射击算法来计算低推力的出站和入站轨迹。结果表明,整个任务植根于当前的NASA技术路线图,正在进行的科学投资以及通过NASA预算推算得出的可行性。此次任务获得了2016年革命性航空航天系统概念-学术联系(RASC-AL)竞赛。

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