首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Triple color images encryption algorithm based on scrambling and the reality-preserving fractional discrete cosine transform
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Triple color images encryption algorithm based on scrambling and the reality-preserving fractional discrete cosine transform

机译:基于加扰和保真度分数离散余弦变换的三色图像加密算法

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摘要

An image encryption algorithm to secure three color images simultaneously by combining scrambling with the reality-preserving fractional discrete cosine transform (RPFrDCT) is proposed. The three color images to be encrypted are converted to their indexed formats by extracting their color maps, which can be considered as the three components of a color image. These three components are affected each other by scrambling the interims obtained from vertically and horizontally combining the three indexed formats with the help of the chaos-based cyclic shift. The three scrambled components are separately transformed with the RPFrDCT, in which the generating sequences are determined by the Chirikov standard chaotic map. Arnold transform is used to further enhance the security. Due to the inherent properties of the chaotic maps, the cipher keys are highly sensitive. Additionally, the cipher image is a single color image instead of three color ones, and is convenient for display, storage and transmission due to the reality property of RPFrDCT. Numerical simulations are performed to show the validity of the proposed algorithm.
机译:提出了一种通过将加扰与保留现实的分数离散余弦变换(RPFrDCT)结合来同时保护三张彩色图像的图像加密算法。要提取的三个彩色图像通过提取其颜色映射表,可以将其转换为索引格式,可以将其视为彩色图像的三个分量。通过在基于混沌的循环移位的帮助下,将通过垂直和水平组合三种索引格式而获得的过渡置为乱码,这三个分量会相互影响。用RPFrDCT分别转换三个加扰的分量,其中生成序列由Chirikov标准混沌映射确定。 Arnold变换用于进一步增强安全性。由于混沌映射图的固有特性,因此密码密钥非常敏感。另外,密码图像是单色图像而不是三色图像,并且由于RPFrDCT的真实性而便于显示,存储和传输。数值仿真表明该算法的有效性。

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