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Cryptanalysis of a Pixel Permutation Based Image Encryption Technique Using Chaotic Map

机译:使用混沌映射的像素置换图像加密技术的密码分析

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Recently, a new image encryption algorithm was proposed by Anwar and Meghana. This encryption scheme uses the Arnold's chaotic cat map to permute the image pixels. The resulting image is then confused with both a secret image provided as part of the secret key and a secret value selected randomly from the permuted image. Using a random image as part of the secret key, gives this algorithm an infinite key space which increases its efficiency against brute-force attacks. In order to help improving the security of modern image encryption schemes, this paper presents a cryptanalysis of the proposed algorithm using a combination of chosen-plaintext and brute-force attacks. First, the infinite key space that the secret image offers is broken using a chosen-plaintext attack. Then, the permutation phase is reversed through a series of chosen-plaintext attacks too. Finally, the secret value chosen randomly from the permuted image is easily brute-forced due to its reduced number of possible values. By applying the above method, it is possible to restore the plain version of any image that was encrypted using the former encryption algorithm. Thus, relying on this algorithm to encrypt real sensitive data is not secure.
机译:最近,Anwar和Meghana提出了一种新的图像加密算法。此加密方案使用Arnold的混沌CAT映射来释放图像像素。然后,得到的图像与作为秘密密钥的一部分提供的秘密图像混淆,并且从允许的图像中随机选择的秘密值。使用随机图像作为秘密密钥的一部分,给出了该算法是一个无限的关键空间,这增加了效率的避难力攻击。为了帮助提高现代图像加密方案的安全性,本文介绍了使用所选明文和蛮力攻击的组合的所提出的算法的密码分析。首先,秘密图像优惠的无限关键空间使用选定的明文攻击破坏。然后,置换阶段也通过一系列选择的明文攻击来反转。最后,由于其减少的可能值数量,从置换图像中随机选择的秘密值很容易被强制强制。通过应用上述方法,可以恢复使用前加密算法加密的任何图像的普通版本。因此,依赖于该算法来加密真正的敏感数据不安全。

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