郑雅卫, 李俊娜, 高泽东, 李建军, 高教波, 王军, 高飞. 双通道红外准直投影光学系统设计[J]. 应用光学, 2019, 40(1): 58-62.
引用本文: 郑雅卫, 李俊娜, 高泽东, 李建军, 高教波, 王军, 高飞. 双通道红外准直投影光学系统设计[J]. 应用光学, 2019, 40(1): 58-62.
ZHENG Yawei, LI Junna, GAO Zedong, LI Jianjun, GAO Jiaobo, WANG Jun, GAO Fei. Design of dual-channel infrared collimating projection optic system[J]. Journal of Applied Optics, 2019, 40(1): 58-62.
Citation: ZHENG Yawei, LI Junna, GAO Zedong, LI Jianjun, GAO Jiaobo, WANG Jun, GAO Fei. Design of dual-channel infrared collimating projection optic system[J]. Journal of Applied Optics, 2019, 40(1): 58-62.

双通道红外准直投影光学系统设计

Design of dual-channel infrared collimating projection optic system

  • 摘要: 介绍了一种双通道准直投影光学系统的设计。重点讨论了光学系统参数的分配以及利用Zemax光学设计软件多重结构功能进行优化的方法, 并利用蒙特卡罗分析对系统的公差进行了分析。光学系统采用望远系统和成像系统组合,在望远系统和成像系统之间的平行光路中插入分束镜引入第2个目标源通道。光学系统工作波段8 μm~12 μm, 视场12°,焦距228.3 mm,入瞳距800 mm,目标通道1和目标通道2的最大角分辨率分别为0.18 mrad和0.17 mrad,满足了投影系统的设计要求。

     

    Abstract: The design of the dual-channel collimating projection optic system was introduced. The parameters distribution of the optic system and the optimization by using the multi-configuration function of ZEMAX optical software were discussed. The overall tolerances were analyzed through Monte Carlo analysis. The optic system adopted the combination of the telescope system and the imaging system. The beam splitter was located in the parallel light-path between the telescope system and the imaging system to combine the first target source channel with the second target source channel. The operating range of the optical system is 8 μm~12 μm, the field of view is 12°, the focal length is 228.3 mm, the entrance pupil distance is 800 mm, the maximum angular resolution of target channel 1 and target channel 2 are 0.18 mrad and 0.17 mrad, respectively, which meet the design requirements of the projection system.

     

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