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Human Mars Entry, Descent and Landing Architecture Study: Phase 2 Summary

机译:人类火星进入,下降和着陆建筑研究:第二阶段摘要

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Several technology investments, beyond those used for robotic missions, are required to develop Mars human scale Entry, Descent, and Landing (EDL) systems. In a resource-constrained environment, studies play the critical role of identifying the most feasible technical paths and high payoff investments. One such NASA multi-directorate, multi-center study, is called the Entry, Descent and Landing Architecture Study (EDLAS). This paper presents a summary of phase two of the study conducted from October 2016 to September 2017. Study ground rules and assumptions are provided by NASA's Human Exploration and Operations Mission Directorate (HEOMD) and include a Mars architecture and Mars surface lander payload manifests. Four unique entry technologies with the potential to deliver a specified 20 t human scale payload to the Mars surface are considered for analysis. Two of these techniques are evolutionary rigid vehicles, derived from robotic capsule missions and the space shuttle. Likewise, two revolutionary deployable vehicles are considered, the Adaptable Deployable Entry Placement Technology (ADEPT) and Hypersonic Inflatable Aerodynamic Decelerator (HIAD). This paper summarizes updates to the entry technology designs, the analysis motivation and approach, figures of merit by which the configurations are compared, and results of the analyses. Finally, findings are presented with the recommendation that two of the four configurations, one evolutionary and one revolutionary technology, continue to be studied in future human scale EDL studies.
机译:除了用于机器人任务的技术投资外,还需要其他一些技术投资来开发火星人规模的进入,下降和着陆(EDL)系统。在资源有限的环境中,研究在确定最可行的技术路径和高回报投资方面起着至关重要的作用。这样的一项NASA多主管,多中心研究称为入境,下降和着陆建筑研究(EDLAS)。本文介绍了从2016年10月到2017年9月进行的研究的第二阶段的摘要。研究的基本规则和假设由NASA的人类探索与作战任务局(HEOMD)提供,包括火星建筑和火星表面着陆器有效载荷清单。考虑使用四种独特的进入技术来将指定的20吨人类规模的有效载荷运送到火星表面进行分析。这些技术中的两种是从机器人太空舱任务和航天飞机派生而来的进化型刚性运载工具。同样,考虑了两种革命性的可部署车辆,即自适应可部署入口进入技术(ADEPT)和高超音速充气气动减速器(HIAD)。本文总结了入门技术设计的更新,分析动机和方法,用于比较配置的优值和分析结果。最后,提出了建议,建议在未来的人类规模EDL研究中继续研究四种配置中的两种,一种是进化技术,另一种是革命性技术。

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