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Color image encryption algorithm based on hyperchaotic and security analysis

机译:基于超混沌和安全性分析的彩色图像加密算法

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According to the problems of the traditional image encryption algorithm, such as cumbersome encryption process, small keyspace, and insufficient security, a color image encryption algorithm based on a four-dimensional hyperchaotic system and using "conversion-scrambling-diffusion" mode is used. The algorithm utilizes improved Chen's hyperchaotic system. First, according to the color image correlation attribute, the gray code iteration number was calculated, and the gray code inversely transformed the pixel value. Subsequently, the chaotic sequence generated by the hyperchaotic system was used to convert the gray code converted pixel matrix. The global pixel position was scrambled, and then, the scrambled matrix was bit-operated to complete image diffusion. Finally, the ciphertext was obtained through matrix transformation. The algorithm can realize a picture and a key. Good image encryption algorithms should meet the requirements of large key-space, key sensitivity, effective resistance to violent attacks, entropy attacks, plaintext attacks, and other attacks as well as real-time requirements. The simulation experiments calculate and analyze evaluation indexes, such as key sensitivity, histogram, image information entropy, including one-dimensional entropy and two-dimensional entropy, and adjacent element correlation. The information entropies are more than 7.99, and the keyspace is larger than 10(86). The results prove that the encryption algorithm has robust security and antiattack ability. (C) 2019 SPIE and IS&T
机译:针对传统图像加密算法繁琐,密钥空间小,安全性不足等问题,采用基于四维超混沌系统并采用“转换加扰扩散”方式的彩色图像加密算法。该算法利用改进的陈氏超混沌系统。首先,根据彩色图像相关属性,计算格雷码迭代次数,然后格雷码反变换像素值。随后,由超混沌系统生成的混沌序列被用于转换由格雷码转换的像素矩阵。对全局像素位置进行加扰,然后对加扰的矩阵进行位运算以完成图像扩散。最后,通过矩阵变换得到密文。该算法可以实现图片和密钥。好的图像加密算法应满足较大的密钥空间,密钥敏感性,对暴力攻击,熵攻击,明文攻击和其他攻击的有效抵抗力以及实时性的要求。仿真实验计算并分析了评价指标,如关键敏感度,直方图,图像信息熵(包括一维熵和二维熵)以及相邻元素的相关性。信息熵大于7.99,密钥空间大于10(86)。实验结果表明,该加密算法具有较强的安全性和抗攻击能力。 (C)2019 SPIE和IS&T

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