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Color image encryption based on the Multiple-order discrete fractional cosine transform and chaos in YCbCr space

机译:基于多阶离散的分数余弦变换和YCBCR空间混沌的彩色图像加密

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Based on the theory that a color image can be decomposed into three primary components and each one can be seen as a gray image, we propose a color image encryption method with multiple-order discrete fractional cosine transform (MODFrCT), which is a kind of encryption with the secrecy of pixel value and pixel position simultaneously. The complex number mode that has a real part and an imaginary one is used in this encryption method to save the transmission channel. Human vision is more sensitive to the Y component than to other two components in YCbCr color space and this color format is used for encrypting the color image. Chaos is introduced to scramble the image phases both in spatial and transformation domains. The numerical simulations demonstrate the validity and efficiency of this scheme and the robustness of the method against occlusion attack is examined.
机译:基于彩色图像可以将彩色图像分解为三个主要组件,每个都可以被视为灰色图像,我们提出了一种具有多阶离散分数余弦变换(ModFrct)的彩色图像加密方法,这是一种使用像素值和像素位置的保密同时加密。在该加密方法中使用具有真实部分和假想的复数模式以保存传输信道。对于YCBCR颜色空间中的其他两个组件,人类视觉比YCBCR颜色空间中的其他两个组件更敏感,而这种颜色格式用于加密彩色图像。引入混乱以扰乱空间和转换域中的图像阶段。数值模拟证明了该方案的有效性和效率,并检查了对遮挡攻击方法的鲁棒性。

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