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System engineering the Space Infrared Interferometric Telescope (SPIRIT)

机译:系统工程太空红外干涉望远镜(SPIRIT)

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摘要

The Space Infrared Interferometric Telescope (SPIRIT) was designed to accomplish three scientific objectives: (1) learn how planetary systems form from protostellar disks and how they acquire their inhomogeneous chemical composition; (2) characterize the family of extrasolar planetary systems by imaging the structure in debris disks to understand how and where planets of different types form; and (3) learn how high-redshift galaxies formed and merged to form the present-day population of galaxies. SPIRIT will accomplish these objectives through infrared observations with a two aperture interferometric instrument. This paper gives an overview of SPIRIT design and operation, and how the three design cycle concept study was completed. The error budget for several key performance values allocates tolerances to all contributing factors, and a performance model of the spacecraft plus instrument system demonstrates meeting those allocations with margin.
机译:空间红外干涉望远镜(SPIRIT)旨在实现三个科学目标:(1)了解行星系统是如何由原恒星盘形成的,以及它们如何获取其不均匀的化学成分; (2)通过对碎片盘中的结构进行成像,以了解不同类型的行星的形成方式和位置,从而表征太阳系外行星系统。 (3)了解高红移星系是如何形成和合并以形成当今的星系种群的。 SPIRIT将通过两孔干涉仪通过红外观测来实现这些目标。本文概述了SPIRIT的设计和操作,以及如何完成三个设计周期的概念研究。几个关键性能值的误差预算分配了所有影响因素的容差,航天器加仪器系统的性能模型证明了可以满足这些分配要求。

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