张祥翔, 傅雨田. 多波段空间推扫相机光学系统设计[J]. 应用光学, 2007, 28(4): 412-415.
引用本文: 张祥翔, 傅雨田. 多波段空间推扫相机光学系统设计[J]. 应用光学, 2007, 28(4): 412-415.
ZHANG Xiang-xiang, FU Yu-tian. Optical system design for multi-band push-broom space camera[J]. Journal of Applied Optics, 2007, 28(4): 412-415.
Citation: ZHANG Xiang-xiang, FU Yu-tian. Optical system design for multi-band push-broom space camera[J]. Journal of Applied Optics, 2007, 28(4): 412-415.

多波段空间推扫相机光学系统设计

Optical system design for multi-band push-broom space camera

  • 摘要: 空间推扫相机的光学系统要求具有大视场、大口径、低F数等特点,据此设计了一种3波段光学系统。在参考国内外各种扫描或推扫相机结构的基础上,根据像差理论和系统要求,采用有效的分光方式和紧凑的光路结构,对不同的波段采用不同的像差校正方法,以及对系统优化组合后,最终得到了一个实用的光学系统。该系统包括可见、中波红外和长波红外波段,视场达到2.93°×0.3°,可见波段的F数为3.8,中波和长波波段的F数为1.9。从设计结果可以看出,系统3个波段的光学调制传递函数(MTF)都接近衍射极限。

     

    Abstract: A multi-band optical system was designed for the push-broom space camera covering visible,medium infrared and far infrared wavebands. The system has large aperture and low F number due to the requirement of large FOV. With the reference to various scanning and push-broom cameras at home and abroad, an optimized compact optical system was achieved by an effective beam-splitting approach, in which the aberrations of three channels were corrected respectively according to the aberration theory and system requirement. The field-of-view of the optical system is 2.93°×0.3°, and F number for the visible light is 3.8 while F number for both of medium infrared and far infrared is 1.9. The design result indicates that the optical modulation transfer functions of the three bands within the cut-off frequency are all close to the diffraction limitation.

     

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