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Double-image encryption without information disclosure using phase-truncation Fourier transforms and a random amplitude mask

机译:使用相位截断傅立叶变换和随机幅度掩码,无需信息公开的双图像加密

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摘要

We present a study about information disclosure in phase-truncation-based cryptosystems. The main information of the original image to be encoded can be obtained by using a decryption key in the worst case. The problem cannot be thoroughly solved by imaginary part truncating, keeping the encryption keys as private keys, or applying different phase keys for different plaintexts during each encryption process as well as the phase modulation in the frequency domain. In order to eliminate the risk of unintended information disclosure, we further propose a nonlinear spatial and spectral encoding technique using a random amplitude mask (RAM). The encryption process involving two security layers can be fully controlled by a RAM. The spatial encoding of the plaintext images and the simultaneous encryption of the plaintext images and the encryption key greatly enhance the security of system, avoiding several attacks that have cracked the phase-truncation-based cryptosystems. Besides, the hybrid encryption system retains the advantage of a trap door one-way function of phase truncation. Numerical results have demonstrated the feasibility and effectiveness of the proposed encryption algorithm.
机译:我们提出了一项有关基于相位截断的密码系统中的信息公开的研究。在最坏的情况下,可以使用解密密钥获得要编码的原始图像的主要信息。在每个加密过程中,通过虚部截断,将加密密钥保留为私钥或对不同的明文应用不同的相位密钥以及频域中的相位调制,无法彻底解决该问题。为了消除意外信息泄露的风险,我们进一步提出了使用随机幅度掩码(RAM)的非线性空间和频谱编码技术。涉及两个安全层的加密过程可以由RAM完全控制。明文图像的空间编码以及明文图像和加密密钥的同时加密极大地增强了系统的安全性,避免了多次破坏基于相位截断的密码系统的攻击。此外,混合加密系统保留了活板门单相截断功能的优点。数值结果证明了该加密算法的可行性和有效性。

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