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Using ISS to develop telescope technology

机译:使用国际空间站开发望远镜技术

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Future space telescope missions concepts have introduced new technologies such as precision formation flight, optical metrology, and segmented mirrors. These new technologies require demonstration and validation prior to deployment in final missions such as the James Webb Space Telescope, Terrestrial Planet Finder, and Darwin. Ground based demonstrations do not provide the precision necessary to obtain a high level of confidence in the technology; precursor free flyer space missions suffer from the same problems as the final missions. Therefore, this paper proposes the use of the International Space Station as an intermediate research environment where these technologies can be developed, demonstrated, and validated. The ISS provides special resources, such as human presence, communications, power, and a benign atmosphere which directly reduce the major challenges of space technology maturation: risk, complexity, cost, remote operations, and visibility. Successful design of experiments for use aboard the space station, by enabling iterative research and supporting multiple scientists, can further reduce the effects of these challenges of space technology maturation. This paper presents results of five previous MIT Space Systems Laboratory experiments aboard the Space Shuttle, MIR, and the ISS to illustrate successful technology maturation aboard these facilities.
机译:未来的太空望远镜任务概念已经引入了新技术,例如精确编队飞行,光学计量学和分段镜。这些新技术需要在部署最终任务(例如James Webb太空望远镜,地球行星搜寻器和达尔文)之前进行演示和验证。地面演示无法提供对技术高度信任的必要精度;前驱自由飞行器太空飞行任务与最终飞行任务同样存在问题。因此,本文提出将国际空间站作为中间研究环境的使用,在这些环境中可以开发,演示和验证这些技术。国际空间站提供了特殊的资源,例如人的存在,通讯,权力和良性氛围,这些资源直接减轻了空间技术成熟的主要挑战:风险,复杂性,成本,远程操作和可见性。通过进行迭代研究并支持多位科学家,成功设计用于空间站的实验,可以进一步降低空间技术成熟带来的挑战的影响。本文介绍了航天飞机,MIR和ISS上MIT空间系统实验室先前的五个实验结果,以说明这些设施上成功的技术成熟。

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