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Requirements Formulation and Dynamic Jitter Analysis for the Fourier-Kelvin Stellar Interferometer

机译:傅立叶 - 开尔文恒星干涉仪的要求配方和动态抖动分析

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The Fourier-Kelvin Stellar Interferometer (FKSI) has been proposed to detect and characterize extra solar giant planets. The baseline configuration for FKSI is a two-aperture, structurally connected nulling interferometer, capable of providing null depth less than 10~(-4) in the infrared. The objective of this paper is to summarize the process for setting the top level requirements and the jitter analysis performed on FKSI to date. The first part of the paper discusses the derivation of dynamic stability requirements, necessary for meeting the FKSI nulling demands. An integrated model including structures, optics, and control systems has been developed to support dynamic jitter analysis and requirements verification. The second part of the paper describes how the integrated model is used to investigate the effects of reaction wheel disturbances on pointing and optical path difference stabilities.
机译:已经提出了傅立叶 - 克尔文恒星干涉仪(FKSI)来检测和表征额外的太阳能巨头行星。 FKSI的基线配置是双孔径,结构连接的耐空干涉仪,能够在红外线中提供小于10〜(-4)的空深度。本文的目的是总结设置顶级要求的过程和迄今为止在FKSI上执行的抖动分析。本文的第一部分讨论了符合FKSI缺乏需求所必需的动态稳定性要求的推导。已经开发了一种集成模型,包括结构,光学系统和控制系统,以支持动态抖动分析和需求验证。本文的第二部分介绍了如何使用综合模型来研究反应轮扰动对指向和光路径稳定性的影响。

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