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大视场离轴三反光学系统设计
引用本文:沈志娟.大视场离轴三反光学系统设计[J].光电技术应用,2020(2):24-27,64.
作者姓名:沈志娟
作者单位:莆田学院机电工程学院;厦门理工学院光电与通信工程学院
基金项目:莆田学院校内科研基金项目(2019027);福建省中青年教师教育科研项目(JAT190590)。
摘    要:与传统折射光学系统相比,离轴反射光学系统具有小体积、轻量化和无色差等特点,因此被广泛应用于望远镜系统和空间观测系统等领域。随着目前自由曲面的广泛应用,首先分析了离轴三反光学系统的初始结构参数确定方法,然后在系统的主反射镜设计中引入Zernike边缘矢高形式的自由曲面,最终设计了一款有效焦距为700 mm,视场角为10°,F/#为4.5,系统总长为597.58 mm的离轴三反光学系统。该系统在71.4 lp/mm处各视场的调制传递函数(MTF)值均大于0.28,畸变均小于0.1%,结果表明,该系统在有效视场内成像质量较好。该系统的设计方法对类似的离轴三反光学系统设计具有一定的参考价值。

关 键 词:离轴三反光学系统  光学设计  大视场  自由曲面  ZERNIKE多项式

Design of Large Field of View Off-axis Three-mirror Reflective Optical System
SHEN Zhi-juan.Design of Large Field of View Off-axis Three-mirror Reflective Optical System[J].Electro-Optic Technology Application,2020(2):24-27,64.
Authors:SHEN Zhi-juan
Affiliation:(School of Mechanical and Electrical Engineering,Putian University,Putian 351100,China;School of Opto-electronic and Communication Engineering,Xiamen University of Technology,Xiamen 361024,China)
Abstract:Compared with the traditional refraction optical system, the off-axis reflection optical system has the characteristics of small volume, light weight and no chromatic aberration, and thus it is widely used in the field of telescope system and space observation system. With the widely use of the free surface, at first, the initial structure parameter determination method of the off-axis three-mirror reflective optical system is analyzed. And then, the free surface with the Zernike polynomial to design the main mirror of the optical system is applied. At last, the off-axis three-mirror reflective optical system is designed, and its effective focal length is 700 mm, field of view is 10°, relative aperture is F/# is 4.5, total length is 597.58 mm. The modulation transfer function(MTF) in every field angle is higher than 0.28 at 71.4 lp/mm, and its maximum distortion is less than 0.1%, and the results show the image quality of the optical imaging system is very good. Therefore, the design method of the optical system has the certain reference value for similar off-axis three-mirror optical system design.
Keywords:off-axis three-mirror reflective optical system  optical design  large field of view  free-form surface  Zernike polynomial
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