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数字全息技术中双CCD镜像重叠位置的调节与标定
引用本文:潘云,潘卫清.数字全息技术中双CCD镜像重叠位置的调节与标定[J].应用光学,2014,35(6):1029-1034.
作者姓名:潘云  潘卫清
作者单位:1.南京航空航天大学 金城学院 实验中心,江苏 南京 211156;
基金项目:国家自然科学基金(51005212);浙江省科技计划项目
摘    要:CCD像素数和动态范围的不足极大地限制了数字全息技术的发展与应用,针对这一问题提出基于信息融合的双CCD镜像重叠布置方案。该方案首先给出了利用2个球面波干涉的方法来判断2个CCD的空间相对位置,并证明了该方法的可行性。然后在实验中利用球面波与平面波进行离轴干涉并结合数字干涉技术来实时地调节2个CCD的位置,使其相对位置初步达到镜像重叠。最后再利用计算机数字图像处理技术进行更加精确的标定,得出2个CCD之间镜像重叠位置的标定参数。实验结果表明,利用上述方法能够较精确地调节和标定2个CCD的相对镜像重叠位置,其误差仅为14 m。

关 键 词:信息光学    数字全息    干涉    CCD    镜像

Adjustment and calibration of dual-CCD's mirroring overlapping position in digital holography
Pan Yun,Pan Weiqing.Adjustment and calibration of dual-CCD's mirroring overlapping position in digital holography[J].Journal of Applied Optics,2014,35(6):1029-1034.
Authors:Pan Yun  Pan Weiqing
Institution:1.Experiment Center of Jincheng College,Nanjing University of Aeronautics and Astronautics,Nanjing 211156,China;2.Department of Physics,Zhejiang Science and Technology University,Hangzhou 310023,China
Abstract:The development and application of digital holography has been greatly limited by the insufficient pixel numbers and dynamic range of charge coupled device (CCD). To solve this problem, an arrangement scheme of dual-CCD-s mirroring overlapping position was put forward, based on the information fusion technology. Firstly, the interference image of two spherical waves was used to adjust the dual-CCD-s mirroring overlapping position, and the feasibility of this method was proved. Then in the experiment, the dual-CCD-s position was adjusted in real time by using the off-axis interferometry of spherical wave and plane wave, and the digital interference technology. Finally, the calibration parameters of the dual-CCD-s mirroring overlapping position were given by using the computer digital image processing technology. The experimental results show that, the dual-CCD-s mirroring overlapping position can be precisely adjusted and calibrated by this method, and the error is only 14 m.
Keywords:information optics  digital holography  interferometry  CCD  mirroringg
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