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Novel single-channel color image encryption algorithm based on chaos and fractional Fourier transform

机译:基于混沌和分数阶傅里叶变换的新型单通道彩色图像加密算法

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摘要

A new color image encryption algorithm based on fractional Fourier transform (FrFT) and chaos is proposed. The colors of the original color image are converted to HSI (hue-saturation-intensity), and the S component is transformed by the random-phase encoding based on FrFT to obtain a new random phase. The I component is transformed by double random-phase encoding based on FrFT using the H component and the new random phase as two phase plates. Then chaos scrambling technology is used to encrypt the image, which makes the resulting image nonlinear and disorder both in spatial domain and frequency domain. Additionally, the ciphertext is not a color image but a combination of a gray image and a phase matrix, so the ciphertext has camouflage property to some extent. The results of numerical simulations demonstrate the effectiveness and the security of this algorithm.
机译:提出了一种基于分数阶傅里叶变换(FrFT)和混沌的彩色图像加密算法。将原始彩色图像的颜色转换为HSI(色相饱和度),并通过基于FrFT的随机相位编码对S分量进行转换,以获得新的随机相位。使用H分量和新的随机相位作为两个相位板,基于FrFT通过双随机相位编码对I分量进行转换。然后使用混沌加扰技术对图像进行加密,从而使所得图像在空间域和频域均具有非线性和无序性。另外,密文不是彩色图像,而是灰度图像和相位矩阵的组合,因此密文在某种程度上具有伪装特性。数值仿真结果证明了该算法的有效性和安全性。

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