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Remote Observations of Reentering Spacecraft Including the Space Shuttle Orbiter

机译:重新进入航天器的远程观察,包括航天飞机轨道

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Flight measurement is a critical phase in development, validation and certification processes of technologies destined for future civilian and military operational capabilities. This paper focuses on several recent NASA-sponsored remote observations that have provided unique engineering and scientific insights of reentry vehicle flight phenomenology and performance that could not necessarily be obtained with more traditional instrumentation methods such as onboard discrete surface sensors. The missions highlighted include multiple spatially-resolved infrared observations of the NASA Space Shuttle Orbiter during hypersonic reentry from 2009 to 2011, and emission spectroscopy of comparatively small-sized sample return capsules returning from exploration missions. Emphasis has been placed upon identifying the challenges associated with these remote sensing missions with focus on end-to-end aspects that include the initial science objective, selection of the appropriate imaging platform and instrumentation suite, target flight path analysis and acquisition strategy, pre-mission simulations to optimize sensor configuration, logistics and communications during the actual observation. Explored are collaborative opportunities and technology investments required to develop a next-generation quantitative imaging system (i.e., an intelligent sensor and platform) with greater capability, which could more affordably support cross cutting civilian and military flight test needs.
机译:飞行测试是在去往未来的民用和军事作战能力的技术开发,验证和认证过程的关键阶段。本文重点分析了提供了独特的工程,可以不必与更传统的仪器方法,如板载离散表面传感器获得再入飞行器的飞行现象和性能的科学见解几款近期NASA赞助的远距离观测。强调的任务包括高超音速再入2009年至2011年,和发射光谱相对小型采样返回胶囊从探索任务返回的过程中NASA航天飞机轨道器的多个空间分辨红外观测。已强调在识别与端至端的方面与这些焦点遥感任务包括所述初始科学目的,适当的成像平台和仪器套件的选择,目标飞行路径分析和采集策略,预相关的挑战任务模拟来优化传感器配置,后勤和通信的实际观察期间。研究是开发下一代定量成像系统(即,智能传感器和平台)有更大的能力,这可以更经济地支持跨部门的民用和军用飞行测试需求所需的合作机会和技术投资。

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