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Passive isolator design for jitter reduction in the Terrestrial Planet Finder Coronagraph

机译:地球上抖动调查器抖动减少的被动隔离器设计

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Terrestrial Planet Finder (TPF) is a mission to locate and study extrasolar Earthlike planets. The TPF Coronagraph (TPF-C), planned for launch in the latter half of the next decade, will use a coronagraphic mask and other optics to suppress the light of the nearby star in order to collect visible light from such planets. The required contrast ratio of 5e-11 can only be achieved by maintaining pointing accuracy to 4 milli-arcseconds, and limiting optics jitter to below 5 nm. Numerous mechanical disturbances act to induce jitter. This paper concentrates on passive isolation techniques to minimize the optical degradation introduced by disturbance sources. A passive isolation system, using compliant mounts placed at an energy bottleneck to reduce energy transmission above a certain frequency, is a low risk, flight proven design approach. However, the attenuation is limited, compared to an active system, so the feasibility of the design must be demonstrated by analysis. The paper presents the jitter analysis for the baseline TPF design, using a passive isolation system. The analysis model representing the dynamics of the spacecraft and telescope is described, with emphasis on passive isolator modeling. Pointing and deformation metrics, consistent with the TPF-C error budget, are derived. Jitter prediction methodology and results are presented. Then an analysis of the critical design parameters that drive the TPFC jitter response is performed.
机译:地面行星查找器(TPF)是定位和学习郊区地球状行星的使命。计划在下一年后半部分推出的TPF调节件(TPF-C)将使用血管假掩模和其他光学来抑制附近星光的光,以便从这些行星中收集可见光。 5E-11所需的对比度只能通过将指向精度保持在4毫克至4毫弧秒,并将光学抖动限制在5 nm以下来实现。众多机械障碍动作诱导抖动。本文集中在被动隔离技术上,以最小化干扰源引入的光学劣化。无源隔离系统,使用符合能量瓶颈的柔性安装件来减少一定频率高于一定频率的能量传输,是一种低风险,飞行验证的设计方法。然而,与活性系统相比,衰减是有限的,因此必须通过分析来证明设计的可行性。本文介绍了基线TPF设计的抖动分析,使用被动隔离系统。描述了代表航天器和望远镜的动态的分析模型,重点是被动隔离器建模。派生指向和变形度量,与TPF-C错误预算一致。提出了抖动预测方法和结果。然后执行驱动TPFC抖动响应的关键设计参数的分析。

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