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水下光学成像系统关键参数的计算与分析

Calculation and Analysis of Key Parameters of Underwater Optical Imaging System.

作者信息

Zhou Guangpeng, Liu Ying, Dang Boshi, Yu Chen, Li Linhan, Du Jie, Ma Junlin, Liu Xinyue

机构信息

Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences (CIOMP), Changchun 130033, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sensors (Basel). 2024 Feb 28;24(5):1537. doi: 10.3390/s24051537.

Abstract

When photographing objects underwater, it is important to utilize an optical window to isolate the imaging device from the water. The properties of the entire imaging system will change, and the imaging quality will decrease due to the refraction impact of the water and the window. The theoretical calculation method for air imaging is no longer relevant in this context. To analyze the unique rule, this research derives the formulas for key parameters of underwater imaging systems under paraxial circumstances. First, the optical window is modeled, then the formula for the optical window's focal length in the underwater environment is derived, and the change rule for the focal length of various window forms underwater is condensed. For the ideal imaging system using a domed optical window, the equivalent two-optical group model of the imaging system is established, and the formula for calculating the focal length, working distance, and depth of field of the underwater imaging system is derived through paraxial ray tracing. The accuracy of the formula is verified through the comparative analysis of the formula calculation results and the Zemax modeling simulation results. It provides an important theoretical basis for the in-depth study of underwater imaging technology.

摘要

在水下拍摄物体时,利用光学窗口将成像设备与水隔离开来非常重要。由于水和窗口的折射影响,整个成像系统的特性会发生变化,成像质量会下降。在此情况下,空气成像的理论计算方法不再适用。为了分析独特规律,本研究推导了近轴情况下水下成像系统关键参数的公式。首先,对光学窗口进行建模,然后推导水下环境中光学窗口焦距的公式,并总结各种窗口形式在水下焦距的变化规律。对于使用圆顶光学窗口的理想成像系统,建立了成像系统的等效双光组模型,并通过近轴光线追迹推导了水下成像系统焦距、工作距离和景深的计算公式。通过公式计算结果与Zemax建模仿真结果的对比分析,验证了公式的准确性。它为深入研究水下成像技术提供了重要的理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7c9/10934048/a0872df3189b/sensors-24-01537-g001.jpg

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