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STRV-1d QWIP technology validation in space flight

机译:STRV-1d QWIP技术在太空飞行中的验证

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摘要

New technologies are arriving on the scene that promise enhancement or new capabilities. Some of these technologies have potential for NASA and DOD space-based applications. In these cases, the technology must be demonstrated and Validated to a degree that risk may be balanced for the space mission roles. Quantum well infrared photo-detector (QWIP) is one of these technologies. QWIP has a variety of space-based applications in the 8 to 16 mum wavelength range. Radiation tolerance and higher operating temperature are potentially significant benefits for long duration missions. In this paper, we describe the selection of and preparation for a mission that provides the opportunity to demonstrate and validate QWIP focal plane arrays in the natural, space radiation environment. We discuss the objectives of this demonstration opportunity, and the development and test steps required to deliver the QWIP experiment to space. (C) 2001 Published by Elsevier Science B.V. [References: 2]
机译:有望增强功能或提供新功能的新技术应运而生。其中一些技术对于NASA和DOD天基应用具有潜力。在这种情况下,必须对技术进行证明和验证,以确保在航天任务中风险可以得到平衡。量子阱红外光电探测器(QWIP)是这些技术之一。 QWIP在8至16微米的波长范围内具有多种基于太空的应用。辐射耐受性和更高的工作温度对于长期任务而言可能具有显着优势。在本文中,我们描述了任务的选择和准备,该任务为在自然,空间辐射环境中演示和验证QWIP焦平面阵列提供了机会。我们讨论了这个演示机会的目标,以及将QWIP实验交付太空所需的开发和测试步骤。 (C)2001年由Elsevier Science B.V.出版[参考文献:2]

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