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Triple-image encryption based on phase-truncated Fresnel transform and basic vector operation

机译:基于相位截断菲涅耳变换和基本矢量运算的三重图像加密

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摘要

A triple-image encryption method is proposed that is based on phase-truncated Fresnel transform (PTFT), basic vector composition, and XOR operation. In the encryption process, two random phase masks, with one each placed at the input plane and the transform plane, are generated by basic vector resolution operations over the first and the second plaintext images, and then a ciphered image in the input plane is fabricated by XOR encoding for the third plaintext image. When the cryptosystem is illuminated by an on-axis plane, assisted by PTFT, the ciphered image is finally encrypted into an amplitude-only noise-like image in the output plane. During decryption, possessing the correct private key, decryption keys, and the assistant geometrical parameter keys, and placing them at the corresponding correct positions, the original three plaintext images can be successfully decrypted by inverse PTFT, basic vector composition, and XOR decoding. Theoretical analysis and numerical simulations both verify the feasibility of the proposed method. (C) 2015 Optical Society of America
机译:提出了一种三相图像加密方法,该方法基于相位截断的菲涅耳变换(PTFT),基本矢量组成和XOR操作。在加密过程中,通过对第一和第二纯文本图像进行基本矢量分辨率运算,生成两个随机相位掩码,每个掩码分别位于输入平面和变换平面,然后在输入平面中制作加密图像通过对第三个纯文本图像进行XOR编码。当密码系统在PTFT的协助下被同轴平面照亮时,加密后的图像最终在输出平面中被加密为仅幅值的类似噪声的图像。在解密过程中,拥有正确的私钥,解密密钥和辅助几何参数密钥,并将它们放置在相应的正确位置,可以通过反PTFT,基本向量组成和XOR解码成功解密原始的三个纯文本图像。理论分析和数值模拟都验证了该方法的可行性。 (C)2015年美国眼镜学会

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