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首页> 外文期刊>International Journal of Optics >A Secure Asymmetric Optical Image Encryption Based on Phase Truncation and Singular Value Decomposition in Linear Canonical Transform Domain
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A Secure Asymmetric Optical Image Encryption Based on Phase Truncation and Singular Value Decomposition in Linear Canonical Transform Domain

机译:基于相位截断和线性规范变换域中的奇异值分解的安全非对称光学图像加密

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A new asymmetric optical double image encryption algorithm is proposed, which combines phase truncation and singular value decomposition. The plain text is encrypted with two-stage phase keys to obtain a uniformly distributed cipher text and two new decryption keys. These keys are generated during the encryption process and are different from encryption keys. It realizes asymmetric encryption and improves the security of the system. The unscrambling keys in the encryption operation are mainly related to plain text. At the same time, the system is more resistant to selective plain text attacks; it also improves the sensitivity of decryption keys. With the application of phase truncation, the key space expanded and the security of the cryptographic system is enhanced. The efficacy of the system is calculated by evaluating the estimated error between the input and retrieved images. The proposed technique provides innumerable security keys and is robust against various potential attacks. Numerical simulations verify the effectiveness and security of the proposed technique.
机译:提出了一种新的非对称光学双重图像加密算法,其结合了阶段截断和奇异值分解。用两级相位键加密纯文本,以获得均匀分布式的密码文本和两个新的解密密钥。在加密过程中生成这些键,并且与加密密钥不同。它实现了不对称加密并提高了系统的安全性。加密操作中的解密密钥主要与纯文本相关。与此同时,系统更耐受选择性普通文本攻击;它还提高了解密键的灵敏度。随着相位截断的应用,扩展的关键空间和加密系统的安全性得到增强。通过评估输入和检索的图像之间的估计误差来计算系统的功效。所提出的技术提供无数的安全键,并对各种潜在攻击具有稳健性。数值模拟验证了所提出的技术的有效性和安全性。

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