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Color image encryption based on fractional Fourier transforms and pixel scrambling technique

机译:基于分数傅里叶变换和像素加扰技术的彩色图像加密

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Color image encryption based on fractional Fourier transform (FRT) and pixel scrambling technique is presented in this paper. In general, color (RGB) image cannot be directly encrypted using a traditional setup for optical information processing, because which is only adapted to process two-dimensional gray image. In the proposed method, a three-dimensional RGB image is decomposed to three two-dimensional gray images (R, G and B values of the color image), and the encryption operation will be done on each two-dimensional gray image, then the encoded color image is available by composing the three two-dimensional encrypted images. The decryption process is an inverse of the encryption. The optical encrypting systems based on the presented method is proposed and simulated. Some results of computer simulation are presented to verify the flexibility and the reliability of this method. The quality of decrypted images would be debased with the difference of the fractional order. The frustrated decryption of monochromic image will affect the color of decrypted image. At the end of this paper, an all-optical and photoelectric encryption/decryption systems solution are presented, and the principle of selecting optical devices are also given.
机译:本文提出了基于分数傅立叶变换(FRT)和像素扰扰技术的彩色图像加密。通常,使用传统的设置对于光学信息处理不能直接加密颜色(RGB)图像,因为这仅适于处理二维灰度图像。在所提出的方法中,三维RGB图像被分解为三维二维灰度图像(彩色图像的R,G和B值),并且加密操作将在每个二维灰度图像上完成,然后是编码彩色图像可通过构思三维二维加密图像来获得。解密过程是加密的反向。提出和模拟了基于所提出的方法的光学加密系统。提出了计算机模拟的一些结果以验证该方法的灵活性和可靠性。解密图像的质量将被扩展的分数顺序的差异。单色图像的挫折解密将影响解密图像的颜色。在本文的末尾,提出了一种全光和光电加密/解密系统解决方案,还给出了选择光学装置的原理。

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