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Chaos-Based Image Encryption Using an Improved Quadratic Chaotic Map

机译:使用改进的二次混沌映射的基于混沌的图像加密

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摘要

In recent years, chaos-based image encryption has become an efficient way to encrypt images due to its high security. In this paper, we improve the classical Quadratic chaotic map to enhance its chaotic properties and use it for image encryption. Compared with the classical Quadratic map, the proposed Quadratic map demonstrates better chaotic properties for encryption such as a much larger maximal Lyapunov exponent. The proposed image encryption scheme is based on two chaotic maps. The first map is the Chepyshev chaotic map, which is used for the permutation of the pixels of the image. The permuted image is subjected to the diffusion process using the improved Quadratic map in an efficient encryption algorithm which its key is related to the original image. The main advantages of the proposed scheme are the large key space and its resistance to various attacks. Simulation results show that the proposed scheme has a high security level with low computational complexity, which makes it suitable for real-time applications.
机译:近年来,基于混沌的图像加密由于其高安全性而已成为加密图像的有效方法。在本文中,我们改进了经典的二次混沌映射以增强其混沌特性,并将其用于图像加密。与经典的二次映射图相比,所提出的二次映射图展示了更好的加密混沌特性,例如更大的最大Lyapunov指数。所提出的图像加密方案基于两个混沌映射。第一张图是切比雪夫(Chepyshev)混沌图,用于对图像像素进行置换。使用改进的二次映射,以有效的加密算法对置换后的图像进行扩散处理,该算法的密钥与原始图像有关。该方案的主要优点是较大的密钥空间及其对各种攻击的抵抗力。仿真结果表明,该方案具有较高的安全性和较低的计算复杂度,适合实时应用。

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