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Investigation of three-mirror objectives for Earth remote sensing operating with an off-axis field of view

机译:离轴视场下地球遥感用三镜物镜研究

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摘要

The design, investigation, and enhancement of telescope objectives used as the principal optical instrument in Earth remote sensing systems are relevant because of the wide application range of the data obtained by such systems. Three-mirror systems can be used as objectives to ensure the set of parameters required for modern instruments (a focal distance of up to 5 m, an angular field of up to 2 degrees-3 degrees, a maximum spatial resolution of up to 0.75-2 m). However, the primary factor affecting the image quality in traditional compact centered systems is the obscuration of the pupil. A method for designing three-mirror flat-field anastigmats operating with an off-axis field of view without obscuration is presented in this paper, together with a discussion of peculiarities and a possible method for evaluating the complexity of calculation of such systems using a complexity coefficient. Objectives with focal distances of 1000 and 1600 mm, f-number of 4-5, and angular field of up to 1 degrees-2 degrees are designed. (C) 2021 Optica Publishing Group
机译:作为地球遥感系统中主要光学仪器的望远镜物镜的设计、研究和增强具有重要意义,因为此类系统获得的数据应用范围广泛。三镜系统可用作物镜,以确保现代仪器所需的参数集(焦距可达 5 m,角视场可达 2 度-3 度,最大空间分辨率可达 0.75-2 m)。然而,在传统的紧凑居中系统中,影响图像质量的主要因素是瞳孔的遮挡。本文提出了一种设计无遮挡离轴视场的三镜平场光栅的方法,并讨论了其特点以及使用复杂系数评估此类系统计算复杂度的可能方法。设计了焦距为1000和1600 mm,f值为4-5,角视场最大为1度-2度的物镜。(C) 2021 Optica 出版集团

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