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Tilted wavefront coding system to eliminate the retroreflection with superior imaging property

机译:倾斜的波前编码系统消除了具有优越成像性能的逆流

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摘要

Since some previous methods sacrifice too much imaging quality to achieve the valid retroreflection reduction, a novel image plane tilted system combined with the wavefront coding is proposed in this paper, which could improve the privacy and security of the imaging equipment by eliminating the retroreflection without suffering significant degradation in imaging quality. First, the theoretical model of the tilted wavefront coding system is established based on the wave-optics theory. According to the derived point spread function and the modulation transfer function, the maximum tilt angle of the image plane is obtained. Second, the target system is designed and optimized by Zemax, and the later simulation analyzes the effects of the tilting on both the retroreflection and the imaging property. Finally, the experiments verify the simulation results. It shows that when the tilt angle equals 5 degrees, there is no longer significant retroreflection on the observation plane with the total receiving power decreasing to nearly 4 orders of magnitude compared with the state without tilting. Moreover, within the maximum tilt angle, the final decoded images of the wavefront coding system still maintain superior clarity and uniformity for both the artificial and the natural objects. Consequently, the BRISQUE index is reduced by 15.92% and 28.19%, respectively, compared with the conventional imaging system, which indicates that the image quality is significantly improved by the proposed system. In conclusion, the technique of wavefront coding could effectively compensate for the high-order aberrations induced by the tilting and preserve a large field of view for precise imaging with no retroreflection, which shows us a broad prospect. (C) 2019 Optical Society of America
机译:由于一些先前的方法牺牲了太多的成像质量以实现有效的逆向反射,因此在本文中提出了一种与波前编码的新颖的图像平面倾斜系统,通过消除逆向反射而不遭受次数,可以改善成像设备的隐私和安全性成像质量的显着降解。首先,基于波光光学理论建立倾斜波前编码系统的理论模型。根据衍生点扩展功能和调制传递函数,获得图像平面的最大倾斜角度。其次,目标系统由ZEMAX设计和优化,后来的模拟分析了倾斜对逆向反射和成像性质的影响。最后,实验验证了仿真结果。它表明,当倾斜角度等于5度时,在观察平面上不再有重要的逆向反射,并且总接收功率与不倾斜的状态相比,总接收功率降低到近4个峰值。此外,在最大倾斜角度内,波前编码系统的最终解码图像仍然对人工和天然物体保持优异的透明度和均匀性。因此,与传统成像系统相比,Brisque指数分别减少了15.92%和28.19%,这表明通过所提出的系统显着改善图像质量。总之,波前编码技术可以有效地补偿倾斜诱导的高阶像差,并保持大视场,无需换转,这向我们表示广阔的前景。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第26期|共7页
  • 作者单位

    State Key Lab Pulsed Power Laser Technol China 460 Huangshan Rd Hefei Anhui Peoples R China;

    State Key Lab Pulsed Power Laser Technol China 460 Huangshan Rd Hefei Anhui Peoples R China;

    State Key Lab Pulsed Power Laser Technol China 460 Huangshan Rd Hefei Anhui Peoples R China;

    State Key Lab Pulsed Power Laser Technol China 460 Huangshan Rd Hefei Anhui Peoples R China;

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  • 正文语种 eng
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