首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A 3D image encryption technique using computer-generated integral imaging and cellular automata transform
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A 3D image encryption technique using computer-generated integral imaging and cellular automata transform

机译:使用计算机生成的积分成像和元胞自动机变换的3D图像加密技术

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摘要

A novel three-dimensional (3D) image encryption approach by using the computer-generated integral imaging and cellular automata transform (CAT) is proposed, in which, the two-dimensional (2D) elemental image array (EIA) digitally recorded by light rays coming from the 3D image is mapped inversely through the virtual pinhole array according to the ray-tracing theory. Next, the encrypted image is generated by using the 2D CAT scrambling transform for the 2D EIA. The reconstructed process is carried out by using the modified computational integral-imaging reconstruction (CIIR) technique; the depth-dependent plane images are reconstructed on the output plane. The reconstructed 3D image quality of the proposed scheme can be greatly improved, because the proposed encryption scheme carries out in a computer which can avoid the light diffraction caused by optical device CIIR, and solves blur problem caused by CIIR by using the pixel-averaging algorithm. Furthermore, the CAT-based encryption algorithm is an error-free encryption method; CAT as an orthogonal transformation offers considerable simplicity in the calculation of the transform coefficient, that is, it can improve the quality of the reconstructed image by reducing energy loss compared with the traditional complicated transform process. To show the effectiveness of the proposed scheme, we perform computational experiments. Experimental results show that the proposed scheme outperforms conventional encryption methods.
机译:提出了一种利用计算机生成的积分成像和细胞自动机变换(CAT)的新型三维(3D)图像加密方法,其中,通过光线数字记录二维(2D)基本图像阵列(EIA)根据光线跟踪理论,来自3D图像的光通过虚拟针孔阵列反向映射。接下来,通过使用用于2D EIA的2D CAT加扰变换来生成加密图像。重建过程是使用改进的计算积分成像重建(CIIR)技术进行的;在输出平面上重建与深度相关的平面图像。所提出的加密方案可以在计算机中进行,避免了光学器件CIIR引起的光衍射,并且通过使用像素平均算法解决了CIIR引起的模糊问题,因此可以大大提高所提出方案的重建3D图像质量。 。此外,基于CAT的加密算法是一种无错误的加密方法。 CAT作为正交变换,在变换系数的计算中提供了相当大的简便性,也就是说,与传统的复杂变换过程相比,它可以通过减少能量损失来提高重建图像的质量。为了显示所提出方案的有效性,我们进行了计算实验。实验结果表明,该方案优于传统的加密方法。

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