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zhaoyan1989987金蟲 (正式寫手)
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A new method of detecting surface damage effect of sensor in optical lens based on cat-eye effect It is the actuality that optical lens has to be disconnected before the surface damage effect of the sensor can be detected. So a new method of detecting surface damage effect of sensor in optical lens based on cat-eye effect is proposed. Based on the idea that the damage regions of the sensor can be regarded as some anomalistic aperture diaphragms, the reflectivity model of the sensor is established. The optical path of the surface damage detecting system can be equivalent to a propagate process for a plane wave through a defocused optical lens and is reflected back to the return place. Then, based on the theory of angular spectrum diffraction and by using the method of two-dimensional discrete Fourier transfer, the diffraction transmission formulas for a plane wave through the cat-eye system are derived. By numerical computation, the laws governing the variation of the intensity distribution of the cat-eye reflected light with some different damage conditions of the sensor are given, and the effect of the focal shift is analyzed. Then an experiment is operated to analyze the feasibility of this detecting method. The results show that the intensity distributions of the cat-eye reflected light have direct relation with the profile of the damage region, and the amplificatory effect for the small damage region is of direct ratio with the focal shift. This method can be conveniently used to detect the surface damage effect of the sensor in optical lens without disconnecting it. |
金蟲 (正式寫手)
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Cat-eye effect based surface damage effect detection of sensor in optical lens It is the actuality that optical lens has to be disconnected before the surface damage effect of the sensor can be detected. In this work, a novel surface damage effect detection algorithm of sensor in optical lens based on cat-eye effect is proposed. As the damage regions of the sensor can be regarded as some anomalistic aperture diaphragms, the reflectivity model of the sensor can be established, where the optical path of the surface damage detection system can be taken as a propagate process for a plane wave through a defocused optical lens and is reflected back to the return place. Based on the theory of angular spectrum diffraction, the diffraction transmission formulas for a plane wave through the cat-eye system are derived by taking two-dimensional discrete Fourier transfer. Afterwards the regulations on the variation of the intensity distribution of the cat-eye reflected light with some different damage conditions of the sensor are given and then the effect of the focal shift is analyzed. Experiment results show the intensity distribution of the cat-eye reflected light has direct relationship with the profile of the damage region and the amplificatory effect for the small damage region is of direct ratio with the focal shift. Moreove, the proposed method can be straightforwardly utilized for the surface damage effect detection of the sensor in optical lens without disconnecting it. |
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