A Robust Color Image Encryption Algorithm in Dual Domain Using Chaotic Map

Deepak Singh, Kuldeep Tomar
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引用次数: 6

Abstract

Secure transmissions of secret images over the public network have a lot of challenges that include hacking, manipulating the actual content, destroying, etc. In order to solve these issues, various image encryption algorithm has been given by experts that work on both spatial or frequencies domain. Most of them are work with gray scale images. In this paper, a robust color image encryption technique is proposed that uses Discrete Cosine Transformation (DCT) and a diffusion operation first applied in spatial domain and then a confusion operation is applied in frequency domain, and that's why this paper has title in dual domain. In encryption, firstly the plain image is performed the XOR operation with key generated by Logistic Map, and we get the diffused image of plain image. Then diffused image is divided into fixed-size blocks and converted in frequencies domain using DCT, then chaotic map is applied to reorder the frequencies coefficient. At last, the Inverse DCT (IDCT) is applied to get the encrypted image. In order to prove the algorithm robustness, various tests has been performed and its result has been compared with existing technique. The analysis and result show that the encrypted image is enough robust against any types of attacks.
基于混沌映射的对偶域鲁棒彩色图像加密算法
在公共网络上安全传输机密图像面临许多挑战,包括黑客攻击、操纵实际内容、破坏等。为了解决这些问题,专家们提出了各种图像加密算法,这些算法既有空间域的,也有频域的。大多数都是处理灰度图像。本文提出了一种基于离散余弦变换(DCT)的彩色图像鲁棒加密技术,该技术首先在空域进行扩散运算,然后在频域进行混淆运算,因此本文的标题为对偶域。在加密过程中,首先对明文图像与逻辑映射生成的密钥进行异或运算,得到明文图像的扩散图像。然后将扩散图像分割成固定大小的块,利用DCT在频域内进行变换,然后利用混沌映射对频率系数进行重排序。最后,利用逆DCT (IDCT)得到加密后的图像。为了证明该算法的鲁棒性,进行了各种测试,并将结果与现有技术进行了比较。分析结果表明,加密后的图像对任何类型的攻击都具有足够的鲁棒性。
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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