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Color image chaos encryption algorithm combining CRC and nine palace map

机译:结合CRC和九宫图的彩色图像混沌加密算法。

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摘要

The color image encryption algorithm based on the chaos theory is not strong enough. In this paper, we proposed a color image chaos encryption algorithm combining Cyclic Redundancy Check (CRC) and nine palace map. Firstly, the pixel data of the plain image were moved and shuffled based on the theory of nine palace map. And the R, G and B components were extracted and converted into a binary sequence matrix that was then cyclically shifted based on the technology of generating CRC code. Finally, the encrypted image was derived from the XOR operation with random key matrix. The average entropy of encrypted image by our algorithm is 7.9993, which is slight improved compared with the coupled hyper chaotic Lorenz algorithm in previous studies. In addition, the algorithm has the advantages of large key space, high key sensitivity, anti-robust attack, and feasible encryption efficiency.
机译:基于混沌理论的彩色图像加密算法不够强大。在本文中,我们提出了一种结合了循环冗余校验(CRC)和九张宫殿图的彩色图像混沌加密算法。首先,基于九宫图的原理对普通图像的像素数据进行了移动和混洗。然后提取R,G和B分量并将其转换为二进制序列矩阵,然后根据生成CRC码的技术对其进行循环移位。最后,从具有随机密钥矩阵的XOR操作得出加密的图像。我们的算法对加密图像的平均熵为7.9993,与先前研究中的耦合超混沌Lorenz算法相比略有改善。另外,该算法具有密钥空间大,密钥敏感度高,抗鲁棒攻击和可行的加密效率的优点。

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