快照式高光谱偏振变焦成像光学系统设计  

Design of Snapshot Hyperspectral Polarization Zoom Imaging Optical System

在线阅读下载全文

作  者:史浩东 范瑞晗[1,2] 王稼禹 王祺 江晟 吴雨芳 李英超 付强[1,2] Shi Haodong;Fan Ruihan;Wang Jiayu;Wang Qi;Jiang Sheng;Wu Yufang;Li Yingchao;Fu Qiang(Jilin Provincial Key Laboratory of Space Optoelectronics Technology,Changchun University of Science and Technology,Changchun 130022,Jilin,China;School of Optoelectronic Engineering,Changchun University of Science and Technology,Changchun 130022,Jilin,China;School of Physics,Changchun University of Science and Technology,Changchun 130022,Jilin,China)

机构地区:[1]长春理工大学吉林省空间光电技术重点实验室,吉林长春130022 [2]长春理工大学光电工程学院,吉林长春130022 [3]长春理工大学物理学院,吉林长春130022

出  处:《光学学报》2025年第1期204-217,共14页Acta Optica Sinica

基  金:国家自然科学基金青年科学基金(62405032);吉林省教育厅项目(JJKH20230813KJ)。

摘  要:针对传统快照式光谱偏振成像系统难以兼具高偏振成像分辨率与高光谱分辨率的问题,提出基于空间维编码的两挡快速变焦快照式光谱偏振一体化成像方案。建立反远距型变焦物镜光焦度分配模型,设计出反远距系数为2.5的超长后截距变焦物镜,以解决光路遮挡难题;提出编码、偏振与色散等器件多参量联合优化方法,以提升系统光谱分辨率及像元匹配精度。设计出400~650 nm波段36 mm/109 mm两挡变焦高光谱偏振成像光学系统。设计结果表明,全焦段全视场全波段下调制传递函数(MTF)在144 lp/mm奈奎斯特频率处均大于0.205,光谱分辨率优于1.06 nm,空间分辨率在0.192 mrad和0.064 mrad之间可调,满足成像要求。通过搭建原理验证系统,标定偏振度精度、光谱偏振成像分辨率和光谱重构精度,开展动态目标成像实验,通过单次曝光获取目标行驶速度为10 m/s的高光谱偏振图像,与传统的强度图像相比,目标对比度提升50.36%以上,这验证了所提方案的可行性。本研究为未来机载高光谱偏振成像系统的设计与应用提供了理论支撑。Objective Snapshot hyperspectral polarization imaging technology combines spectral imaging and polarization imaging,allowing for the simultaneous acquisition of hyperspectral,polarization,and spatial information.This forms a fourdimensional data cube of the target,expanding the dimensions of target information perception.The system finds wide applications in marine environment monitoring,earth remote sensing,forest resource exploration,military reconnaissance,and search and rescue operations.However,current hyperspectral polarization imaging systems,developed by various research institutions,typically use a fixed-focus system,which struggles to integrate high polarization imaging resolution with high spectral resolution.Improving spectral resolution often limits polarization imaging resolution,resulting in unclear target imaging.In this paper,we propose an integrated imaging solution based on spatial dimension coding.The design maintains constant spectral resolution while improving polarization imaging resolution when switching between short and long focal lengths.The system enables wide-field scanning in the short-focus state and highresolution imaging in the long-focus state,broadening the application scope of hyperspectral polarization imaging technology.Methods First,the initial structural parameters of the front zoom objective are determined by establishing a focal distribution model for the reverse telephoto zoom objective.An ultra-long rear intercept zoom objective with a reverse telephoto coefficient of 2.5 is designed to address the issue of optical path occlusion.Next,the coupling relationship between stop position and uniformity of image surface illuminance is analyzed,and the optimal stop position is determined to improve the accuracy of polarization information acquisition at the edges of the system's field of view.In addition,a digital micromirror device(DMD),relay mirror,imaging mirror,micro polarizer array(MPA),and spectral resolution are proposed to improve both the system's spectral resolution a

关 键 词:成像系统 快照式高光谱偏振 变焦 光学设计 

分 类 号:O435.1[机械工程—光学工程] O435.2[理学—光学] O436.3[理学—物理]

 

参考文献:

正在载入数据...

 

二级参考文献:

正在载入数据...

 

耦合文献:

正在载入数据...

 

引证文献:

正在载入数据...

 

二级引证文献:

正在载入数据...

 

同被引文献:

正在载入数据...

 

相关期刊文献:

正在载入数据...

相关的主题
相关的作者对象
相关的机构对象