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A General Tool for Evaluating High-contrast Coronagraphic Telescope Performance Error Budgets

机译:评估高对比度日冕望远镜性能误差预算的通用工具

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This paper describes a general purpose Coronagraph Performance Error Budget (CPEB) tool that we have developed under the NASA Exoplanet Exploration Program. The CPEB automates many of the key steps required to evaluate the scattered starlight contrast in the dark hole of a space-based coronagraph. It operates in 3 steps: first, a CodeV or Zemax prescription is converted into a MACOS optical prescription. Second, a Matlab program calls ray-trace code that generates linear beam-walk and aberration sensitivity matrices for motions of the optical elements and line-of-sight pointing, with and without controlled coarse and fine-steering mirrors. Third, the sensitivity matrices are imported by macros into Excel 2007 where the error budget is created. Once created, the user specifies the quality of each optic from a predefined set of PSDs. The spreadsheet creates a nominal set of thermal and jitter motions and combines them with the sensitivity matrices to generate an error budget for the system. The user can easily modify the motion allocations to perform trade studies.
机译:本文介绍了我们根据NASA系外行星探索计划开发的通用日冕仪性能误差预算(CPEB)工具。 CPEB可自动执行许多必要步骤,以评估天基日冕仪暗孔中的散射星光对比度。它的操作分为3个步骤:首先,将CodeV或Zemax处方转换为MACOS光学处方。其次,Matlab程序调用射线跟踪代码,该代码生成线性光束移动和像差敏感度矩阵,以用于光学元件的运动和视线指向,带有或不带有受控的粗糙和精细转向镜。第三,将灵敏度矩阵通过宏导入Excel 2007,在其中创建错误预算。创建后,用户可以从一组预定义的PSD中指定每个光学元件的质量。电子表格会创建一组名义上的热运动和抖动运动,并将它们与灵敏度矩阵结合起来以生成系统的误差预算。用户可以轻松修改动议分配以进行贸易研究。

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