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1. 中国科学院 长春光学精密机械与物理研究所,吉林 长春,中国,130033
2. 中国科学院 研究生院 北京,100039
收稿日期:2009-06-25,
修回日期:2009-08-26,
网络出版日期:2010-07-30,
纸质出版日期:2010-07-20
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任建伟, 刘则洵, 万 志, 李宪圣, 任建岳. 离轴三反宽视场空间相机的辐射定标[J]. 光学精密工程, 2010,18(7): 1491-1497
REN Jian-wei, LIU Ze-xun, WAN Zhi, LI Xian-sheng, REN Jian-yue. Radiometric calibration of off-axis three-mirror-anastigmat space camera with wide viewing field[J]. 光学精密工程, 2010,18(7): 1491-1497
任建伟, 刘则洵, 万 志, 李宪圣, 任建岳. 离轴三反宽视场空间相机的辐射定标[J]. 光学精密工程, 2010,18(7): 1491-1497 DOI: 10.3788/OPE.20101807.1491.
REN Jian-wei, LIU Ze-xun, WAN Zhi, LI Xian-sheng, REN Jian-yue. Radiometric calibration of off-axis three-mirror-anastigmat space camera with wide viewing field[J]. 光学精密工程, 2010,18(7): 1491-1497 DOI: 10.3788/OPE.20101807.1491.
离轴三反(TMA)光学系统是目前最先进的空间对地观测相机的光学系统。本文在分析离轴TMA宽视场空间相机成像机理的基础上
针对其光学系统光路和结构的特点
提出了分视场定标和利用特殊开口形状积分球的全视场定标两种方案
并采用两种定标方案分别对离轴TMA宽视场空间相机两个不同阶段的样机进行了实验室辐射定标
定标结果表明两种方案切实可行
满足该相机实验室辐射定标要求。通过对提出的两种实验室辐射定标方案优缺点的分析
得出两种定标方案不同的使用条件
结果显示两种定标方案的定标精度分别为1.68%和1.89%。
Off-axis Three-Mirror-Anastigmat(TMA)optical system is a most advanced optical system used in space cameras for earth observation presently. In this paper
the imaging mechanism of a off-axis TMA wide viewing field space camera is analyzed
and two kinds of calibration projects
sectional viewing field radiometric calibration and entire viewing field radiometric calibration using an especial hatch integrating sphere
are proposed according to the path and construction features of the off-axis TMA optical system.Then
Both the projects are used in the laboratory radiometric calibration for the different phase specimens of the off-axis TMA space camera. The calibration result indicates that both of the projects are feasible and can fully satisfy the requirements of laboratory radiometric calibration. The service conditions of the two projects are obtained by analyzing the relative merits of the projects. It is concluded that the calibration accuracies of two projects are 1.68% and 1.89%
respectively.
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常军, 翁志成, 姜会林, 等. 长焦距空间三反光学系统的设计[J]. 光学 精密工程, 2001, 9(4):315-318. CHANG J, WENG Z C, JIANG H L, et al.. Design of long focal length space optical system with three reflective mirrors [J]. Opt. Precision Eng., 2001,9(4):315-318.
张雷, 贾学志. 大型离轴三反相机桁架式主支撑结构的设计与优化[J]. 光学 精密工程, 2009,17(3):603 -608. ZHANG L, JIA X Z. Design and optimization of trussed supporting structure for off-axis three-mirror reflective space camera [J]. Opt. Precision Eng., 2009,17(3):603-608.
李志来, 薛栋林, 张学军. 长焦距大视场光学系统的光机结构设计[J]. 光学 精密工程, 2008,16(12):2485 -2490. LI Z L, XUE D L, ZHANG X J. Optical and mechanical design for long focal length and wide-field optical system [J]. Opt. Precision Eng., 2008,16(12):2485 -2490.
邹刚毅, 樊学武. 离轴三反射望远镜遮光罩设计与杂光分析[J]. 光子学报, 2009,38(3): 605-609. ZOU G Y, FAN X W. Baffle design and stray light analysis of the off-axis three-mirror telescope [J]. Acta Photonica Sinica, 2009,38(3):605 -609.
林德荦. 资源一号卫星CCD相机辐射定标和图像辐射校正[J]. 航天返回与遥感, 2000,21(2):8-13. LIN D L. Radiation calibration of CBERS-1 ccd camera and image radiation correction [J]. Spacecraft Recovery & Remote Sensing, 2000,21(2):8 -13.
章骏平, 吴浩宇, 周威, 等. 大孔径积分球辐射源光谱辐射特性测试方法研究[J]. 量子电子学报, 2001,18(5):424 -428. ZHANG J P, WU H Y, ZHOU W, et al..Experimental study of spectral radiance characteristics of large aperture integrating sphere [J]. Chinese Journal of Quantum Electronics, 2001,18(5):424-428.
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