双波段共孔径光学成像系统的设计

Q3 Physics and Astronomy
Yiming Ying, Bo Yang, Qianjin Wang
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引用次数: 0

摘要

本文提出了一种基于内反射透镜的可见光/近红外(NIR)共孔径光学系统,光通过透镜内部反射进行传播,简化了共孔径结构,减少了透镜数量,扩大了视场,利用二向色镜完成光谱分离,实现可见光和近红外光同时成像。利用光学设计软件对光学系统进行了仿真和优化,并进行了容差分析和散射光分析。对于敏感公差引起的模糊图像,使用SRN-Deblurnet对模糊图像进行图像恢复。该系统将总视场扩展到30°,并在两个波段同时提供高质量的图像。蒙特卡罗公差分析证实了系统的可制造性。内部反射镜透镜结构有助于纠正轴的外部像差,减少了反射镜的数量和调整难度,而SRN-Deblurnet则减少了敏感公差的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design of the dual-band common-aperture optical imaging system

Design of the dual-band common-aperture optical imaging system
In this paper, a visible/near-infrared (NIR) co-aperture optical system based on an internal reflecting lens is proposed, where the light propagates by reflecting inside the lens, simplifying the co-aperture structure, reducing the number of lenses while enlarging the field of view, and using dichroic mirrors to complete the spectral separation to realize the simultaneous imaging of visible and near-infrared light. The optical system is simulated and optimized by optical design software, and tolerance analysis and scattered light analysis are performed. For blurred images caused by sensitive tolerances, image restoration of the blurred images is performed using SRN-Deblurnet. The system extends the total field of view to 30°and provides high-quality images in both bands simultaneously. Monte Carlo tolerance analysis confirms the manufacturability of the system. The internal reflector lens structure helps to correct the external aberration of the axis, reducing the number of mirrors and the difficulty of adjustment, while the SRN-Deblurnet reduces the impact of sensitive tolerances.
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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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