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Chaos-based Color Image Encryption Using One-time Keys and Choquet Fuzzy Integral

机译:使用一次性密钥和Choquet模糊积分进行基于混沌的彩色图像加密

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This paper proposes a chaos-based color image encryption scheme using one-time keys and Choquet fuzzy integral (CFI). The major core of the encryption algorithm is a pseudo-random number generator based on the CFI, and the key is plain-image dependent. Before encrypting the color image, the hash function is applied to generate the 256-bit key, and the hyper chaotic Qi system is iterated for limited times to generate the initial parameters sequences for the CFI. The outputs of the CFI are employed to confuse and diffuse the red, green and blue components for the image respectively. Experiment results and security analysis show that the scheme not only can achieve good encryption result and large key space, but also can resist against common attacks, so the scheme is reliable to be adopted for image encryption in secure communications.
机译:提出了一种基于一次性密钥和Choquet模糊积分(CFI)的基于混沌的彩色图像加密方案。加密算法的主要核心是基于CFI的伪随机数生成器,并且密钥取决于纯图像。在对彩色图像进行加密之前,应用哈希函数生成256位密钥,并在有限的时间内迭代超混沌Qi系统以生成CFI的初始参数序列。 CFI的输出分别用于混淆和分散图像的红色,绿色和蓝色分量。实验结果和安全性分析表明,该方案不仅可以达到良好的加密效果和较大的密钥空间,而且还可以抵御常见的攻击,因此可以可靠地用于安全通信中的图像加密。

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