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基于ILM混沌系统的轨道移位像素置乱的图像加密方案

Image Encryption Scheme Based on Orbital Shift Pixels Shuffling with ILM Chaotic System.

作者信息

Ali Wajid, Zhu Congxu, Latif Rabia, Asim Muhammad, Tariq Muhammad Usman

机构信息

School of Computer Science and Engineering, Central South University, Changsha 410083, China.

Artificial Intelligence and Data Analytics Laboratory, College of Computer and Information Sciences (CCIS), Prince Sultan University, Riyadh 11586, Saudi Arabia.

出版信息

Entropy (Basel). 2023 May 12;25(5):787. doi: 10.3390/e25050787.

Abstract

Image encryption techniques protect private images from unauthorized access while they are being transmitted. Previously used confusion and diffusion processes are risky and time-consuming. Therefore, finding a solution to this problem has become necessary. In this paper, we propose a new image encryption scheme that combines the Intertwining Logistic Map (ILM) and Orbital Shift Pixels Shuffling Method (OSPSM). The proposed encryption scheme applies a technique for confusion inspired by the rotation of planets around their orbits. We linked the technique of changing the positions of planets around their orbits with the shuffling technique of pixels and combined it with chaotic sequences to disrupt the pixel positions of the plain image. First, randomly selected pixels from the outermost orbit are rotated to shift the pixels in that orbit, causing all pixels in that orbit to change their original position. This process is repeated for each orbit until all pixels have been shifted. This way, all pixels are randomly scrambled on their orbits. Later on, the scrambled pixels are converted into a 1D long vector. The cyclic shuffling is applied using the key generated by the ILM to a 1D long vector and reshaped into a 2D matrix. Then, the scrambled pixels are converted into a 1D long vector to apply cyclic shuffle using the key generated by the ILM. After that, the 1D long vector is converted into a 2D matrix. For the diffusion process, using ILM generates a mask image, which is then XORed with the transformed 2D matrix. Finally, a highly secure and unrecognizable ciphertext image is obtained. Experimental results, simulation analysis, security evaluation, and comparison with existing image encryption schemes show that it has a strong advantage in defending against common attacks, and the operating speed of this encryption scheme also performs excellently in practical image encryption applications.

摘要

图像加密技术可在私密图像传输过程中保护其不被未经授权访问。先前使用的置乱和扩散过程存在风险且耗时。因此,找到解决此问题的方法变得很有必要。在本文中,我们提出了一种新的图像加密方案,该方案结合了交织逻辑映射(ILM)和轨道移位像素置乱方法(OSPSM)。所提出的加密方案应用了一种受行星绕轨道旋转启发的置乱技术。我们将行星绕轨道改变位置的技术与像素置乱技术相联系,并将其与混沌序列相结合,以打乱明文图像的像素位置。首先,从最外层轨道随机选择像素进行旋转,以移动该轨道上的像素,使该轨道上的所有像素都改变其原始位置。对每个轨道重复此过程,直到所有像素都已移位。通过这种方式,所有像素在其轨道上被随机加扰。随后,加扰后的像素被转换为一维长向量。使用由ILM生成的密钥对一维长向量应用循环置乱,并重新整形为二维矩阵。然后,将加扰后的像素转换为一维长向量,以使用由ILM生成的密钥应用循环置乱。之后,将一维长向量转换为二维矩阵。对于扩散过程,使用ILM生成一个掩码图像,然后将其与变换后的二维矩阵进行异或运算。最后,得到一个高度安全且无法识别的密文图像。实验结果、仿真分析、安全性评估以及与现有图像加密方案的比较表明,它在抵御常见攻击方面具有强大优势,并且该加密方案的运行速度在实际图像加密应用中也表现出色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bf9/10217415/492cc6a54d71/entropy-25-00787-g001.jpg

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