Cryptoanalysis of a multiple-image encryption scheme based on amplitude and phase truncation in the Fourier domain.

Applied optics Pub Date : 2024-12-01 DOI:10.1364/AO.540688
Y Xiong, J Liu, J Gu, R Kumar
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Abstract

This paper presents a comprehensive cryptoanalysis of a multiple-image encryption scheme based on amplitude truncation (AT) and phase truncation (PT) in the Fourier domain. In contrast to the conventional single-image cryptosystem based on phase-truncated Fourier transform (PTFT), the enhanced PTFT-based cryptosystem was proposed to encode multiple images efficiently and to augment the security strength by expanding the key space. Nevertheless, we found that the amplitude key exhibits low sensitivity, which has a restricted impact on the security enhancement and makes the scheme vulnerable. Moreover, the two random phase masks (RPMs) employed as private keys are uncorrelated with the plaintexts, which can be recovered through a devised known-plaintext attack (KPA). Once these additional private keys are recovered, the number of unknown keys is reduced to two, making it possible to recover plaintext information encrypted by this advanced PTFT-based cryptosystem using an iterative attack without any knowledge of the private keys. Based on these findings, a hybrid attack consisting of two cascaded KPAs and chosen-ciphertext attacks (CCAs) is proposed to successfully crack the improved PTFT-based cryptosystem. Numerical simulations have been performed to validate the feasibility and effectiveness of the proposed hybrid attack.

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基于傅里叶域振幅和相位截断的多图像加密方案的密码分析。
本文全面分析了基于傅里叶域振幅截断(AT)和相位截断(PT)的多图像加密方案。与传统的基于相位截断傅里叶变换(PTFT)的单图像加密系统相比,我们提出了基于 PTFT 的增强型加密系统,以高效地编码多图像,并通过扩展密钥空间来增强安全强度。然而,我们发现振幅密钥的灵敏度较低,对安全性增强的影响有限,使该方案易受攻击。此外,作为私钥使用的两个随机相位掩码(RPM)与明文不相关,可以通过设计的已知明文攻击(KPA)恢复。一旦恢复了这些额外的私钥,未知密钥的数量就会减少到两个,这样就有可能在不知道私钥的情况下,通过迭代攻击恢复由基于 PTFT 的先进密码系统加密的明文信息。基于这些发现,我们提出了一种由两个级联 KPA 和选择密文攻击(CCA)组成的混合攻击,以成功破解基于 PTFT 的改进密码系统。为了验证所提混合攻击的可行性和有效性,我们进行了数值模拟。
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