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An efficient approach for encrypting double color images into a visually meaningful cipher image using 2D compressive sensing

机译:一种使用2D压缩感测的对视觉有意义的密码图像加密双色图像的有效方法

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摘要

An efficient visually meaningful double color image encryption algorithm is proposed by combining 2D compressive sensing (CS) with an embedding technique. First, two color images are measured by measurement matrices in two directions to achieve simultaneous compression and encryption, in which low-dimensional matrices generated from Logistic-Sine system (LSS) are extended with Kronecker product (KP), and the resulting high-dimensional matrices optimized by singular value decomposition (SVD) are employed as measurement matrices. Second, the compressed cipher images are confused by index sequences produced by a 6D hyperchaotic system. Finally, a visually meaningful cipher image is obtained by embedding permutated cipher images into a color carrier image. The final cipher image and plain image are of the same size, which greatly reduces the storage space and transmission bandwidth. To enhance the relationship of our algorithm with plain images and prevent vulnerability to known-plaintext and chosen-plaintext attacks, SHA 256 hash values and feature parameters of plain images are combined to generate the initial values of the LSS and 6D hyperchaotic system, and these parameters are both embedded into the carrier image to avoid additional transmission and storage. Simulation results and performance analyses demonstrate the effectiveness and security of the proposed image encryption scheme. (C) 2020 Elsevier Inc. All rights reserved.
机译:将二维压缩感知(CS)与嵌入技术相结合,提出了一种高效的视觉意义双色图像加密算法。首先,通过测量矩阵在两个方向上测量两幅彩色图像,以实现同时压缩和加密,其中使用Kronecker乘积(KP)扩展Logistic正弦系统(LSS)生成的低维矩阵,并使用奇异值分解(SVD)优化得到的高维矩阵作为测量矩阵。第二,压缩后的密码图像被6D超混沌系统产生的索引序列混淆。最后,将置换后的加密图像嵌入到彩色载体图像中,得到具有视觉意义的加密图像。最终的加密图像和普通图像大小相同,这大大减少了存储空间和传输带宽。为了增强我们的算法与普通图像的关系,防止受到已知明文和选择明文攻击的攻击,将SHA 256哈希值和普通图像的特征参数结合起来,生成LSS和6D超混沌系统的初始值,并将这些参数嵌入载体图像中,以避免额外的传输和存储。仿真结果和性能分析证明了该图像加密方案的有效性和安全性。(C) 2020爱思唯尔公司版权所有。

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