An efficient image encryption algorithm based on blocks permutation and Rubik's cube principle for iris images

K. Loukhaoukha, M. Nabti, Khalil Zebbiche
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引用次数: 14

Abstract

This paper proposes an efficient image cryptosystem based on permutation and diffusion operations in order to enhance the protection of iris-based systems against replay attacks. These attacks have been identified and located in different points by Ratha et al. [1]. First, the original image is partitioned into blocks, which are then permuted using a permutation key. After that, the Rubik's cube principle is applied to each block in order to obtain a scrambled image. Finally, the pixels values of rows and columns of the scrambled image are changed using XOR operator to generate the encrypted image. Experimental tests and security analysis have been carried out on iris images, chosen from CASIA database [2]. The obtained results clearly show the robustness of the proposed image cryptosystem against common attacks, namely exhaustive, differential and statistical attacks and also reveal the high security level achieved by the proposed algorithm.
基于块排列和魔方原理的虹膜图像加密算法
为了提高基于虹膜的系统对重放攻击的防护能力,本文提出了一种基于排列和扩散操作的高效图像密码系统。这些攻击已经被Ratha等人识别并定位在不同的点上[1]。首先,将原始图像划分为块,然后使用置换键对其进行排列。之后,将魔方原理应用于每个块,以获得打乱后的图像。最后,通过异或运算改变置乱后图像的行、列像素值,生成加密图像。虹膜图像选择自CASIA数据库[2],进行了实验测试和安全性分析。得到的结果清楚地显示了所提出的图像密码系统对常见攻击(即穷举攻击、差分攻击和统计攻击)的鲁棒性,也揭示了所提出算法所实现的高安全级别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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