Volume 43 Issue 3
Apr.  2014
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Li Gang, Fan Xuewu, Zou Gangyi, Wang Hongjuan. Design of space optical system with double infrared waveband based on image space scanning[J]. Infrared and Laser Engineering, 2014, 43(3): 861-866.
Citation: Li Gang, Fan Xuewu, Zou Gangyi, Wang Hongjuan. Design of space optical system with double infrared waveband based on image space scanning[J]. Infrared and Laser Engineering, 2014, 43(3): 861-866.

Design of space optical system with double infrared waveband based on image space scanning

  • Received Date: 2013-07-05
  • Rev Recd Date: 2013-08-12
  • Publish Date: 2014-03-25
  • The design of optical systems with wide ground coverage are restricted by the size of infrared detector. This problem can be solved by choosing the appropriate imaging mode. A kind of image space scanning method was given in the paper. It could satisfy the optical systems with general area infrared detectors. The picture was built by image mosaics technology. Because the image space scanning method needs to be done in the parallel light path, the design method of three-mirror afocal system was studied based on two-mirror afocal system and the formulas to compute the initial structure was given. The optical system consists of afocal system, scanning mirror and imaging part. The scanning mirror was placed at the exit pupil of the afoacl system. The MWIR and LWIR were separated by the field-bias method and imaged respectively. The simulation analysis shows that the Narcissus is under control and the MTF of the optical system is very close to the diffraction limit.
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    [2] Wang Xiaofei, Zhang Haiyan. Developement of infrared focal plane array imaging guidance technology[J]. Tactical Missile Technology July, 2010(4): 120-123. (in Chinese) 王晓飞, 张海燕. 红外焦平面阵列成像制导技术的发展[J]. 战术导弹技术, 2010(4): 120-123.
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    [4] Cai Yi. The scanning and starring FPA in infrared systems[J]. Infrared Technology, 2001, 23(1): 3-7. (in Chinese) 蔡毅. 红外系统中的扫描型和凝视型FPA [J]. 红外技术, 2001, 23(1): 3-7.
    [5] Ming Ming, Yang Fei, Zhao Jinyu, et al. Catadioptric optical system with large aperture, wide field of view and broad waveband[J]. Infrared and Laser Engineering, 2010, 41(1): 149-154. (in Chinese) 明名, 杨飞, 赵金宇, 等. 折反式大口径、大视场、宽谱段光 学系统[J]. 红外与激光工程, 2010, 41(1): 149-154.
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    [10] Pan Junhua. The methodic design of the IR imaging system with large aperture [J]. Acta Optica Sinica, 2003, 23 (12): 1475-1478. (in Chinese) 潘君骅. 大口径红外成像系统的光学设计[J]. 光学学报, 2003, 23(12): 1475-1478.
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    [12] Liu Xin, Pan Zhifeng. Analysis and quantitative calculating methods for Narcissus of infrared optical system [J]. Infrared and Laser Engineering, 2012, 41(7): 1684-1689. (in Chinese) 刘欣, 潘枝峰. 红外光学系统冷反射分析和定量计算方法[J]. 红外与激光工程, 2012, 41(7): 1684-1689.
    [13] Wang Shanshan, Liang Yuhong, Xiang Yang. A inhibition of Narcissus based on optical optimization design[J]. Journal of Changchun University of Science and Technology, 2012, 35 (3): 16-18. (in Chinese) 王珊珊, 梁宇宏, 向阳. 一种基于光学优化设计的冷反射 抑制[J]. 长春理工大学学报, 2012, 35(3): 16-18.
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Design of space optical system with double infrared waveband based on image space scanning

  • 1. Xi'an Institute of Optics and Precision Mechanics,Chinese Academy of Sciences,Xi'an 710119,China;
  • 2. University of Chinese Academy of Sciences,Beijing 100049,China

Abstract: The design of optical systems with wide ground coverage are restricted by the size of infrared detector. This problem can be solved by choosing the appropriate imaging mode. A kind of image space scanning method was given in the paper. It could satisfy the optical systems with general area infrared detectors. The picture was built by image mosaics technology. Because the image space scanning method needs to be done in the parallel light path, the design method of three-mirror afocal system was studied based on two-mirror afocal system and the formulas to compute the initial structure was given. The optical system consists of afocal system, scanning mirror and imaging part. The scanning mirror was placed at the exit pupil of the afoacl system. The MWIR and LWIR were separated by the field-bias method and imaged respectively. The simulation analysis shows that the Narcissus is under control and the MTF of the optical system is very close to the diffraction limit.

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