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Multiple-image encryption based on interference principle and phase-only mask multiplexing in Fresnel transform domain

机译:菲涅耳变换域中基于干扰原理和仅相位掩码复用的多图像加密

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摘要

In this article, a multiple-image encryption method based on the optical interference principle and phase-only mask (POM) multiplexing is proposed. During the encryption process, each secret image is encoded into two analytically obtained POMs and one computer-generated random POM, in which no iterative computation is required. The analytically obtained POMs taken from different secret images are then synthesized by POM multiplexing and further encoded into two complex ciphertext images. The silhouette problem that exists in the earlier interference principle-based encryption approaches is totally resolved by the proposal. Both digital and optical means can be used for decryption. The crosstalk effect between the secret images will not appear in the decrypted results by using the proposed system. Numerical simulations have been given to verify the performance and feasibility of the proposal. We also discuss briefly the influence of information compression on the quality of decrypted images.
机译:本文提出了一种基于光干涉原理和仅相位掩模(POM)复用的多图像加密方法。在加密过程中,每个秘密图像都被编码为两个解析获得的POM和一个计算机生成的随机POM,在其中不需要进行迭代计算。然后,通过POM复用来合成从不同的秘密图像获取的解析获得的POM,并将其进一步编码为两个复杂的密文图像。该提议完全解决了早期基于干扰原理的加密方法中存在的轮廓问题。数字和光学手段都可以用于解密。使用所提出的系统,秘密图像之间的串扰效果不会出现在解密结果中。已经进行了数值模拟,以验证该建议的性能和可行性。我们还将简要讨论信息压缩对解密图像质量的影响。

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