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Color information security system using discrete cosine transform in gyrator transform domain radial-Hilbert phase encoding

机译:陀螺仪变换域径向希尔伯特相位编码中使用离散余弦变换的色彩信息安全系统

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摘要

A novel color-information encryption technique based on discrete cosine transform and radial Hilbert phase mask in gyrator transform domain is proposed. In this work, the radial Hilbert phase function is employed as selected phase mask. Before the encryption, the original color image is converted into independent channels, i.e. red, green, and blue. Each channel is encrypted using first random phase mask and discrete cosine transform at input plane, and then the first gyrator transform is executed. The obtained image is again encrypted using second random phase mask and discrete cosine transform at frequency plane, and then transmitted through radial Hibert phase mask. The gyrator transform is performed on the transmitted image. The integral orders of radial Hibert phase mask and transformation angles of gyrator transform in each channel provide supplementary keys to enhance the security. The proposed system evades the misalignment problems. Numerical simulations are demonstrated to test the security, validity, and efficiency of the proposed algorithm.
机译:提出了一种基于离散余弦变换和径向希尔伯特相位模板的陀螺变换域颜色信息加密技术。在这项工作中,将径向希尔伯特相位函数用作选定的相位掩码。在加密之前,原始彩色图像被转换成独立的通道,即红色,绿色和蓝色。使用第一随机相位掩码和输入平面上的离散余弦变换对每个通道进行加密,然后执行第一回转器变换。再次使用第二随机相位掩模和频率平面上的离散余弦变换对获得的图像进行加密,然后通过径向Hibert相位掩模进行传输。对所传输的图像执行回转器变换。每个通道中径向希伯特相位掩模的整数阶和回转器变换的变换角提供了补充密钥,以增强安全性。所提出的系统避免了未对准问题。数值仿真证明了该算法的安全性,有效性和有效性。

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