A novel image encryption scheme using chaos, hyper-chaos systems and the secure Hash algorithm SHA-1

N. B. Slimane, K. Bouallegue, Mohsen Machhout
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引用次数: 8

Abstract

In this paper, we introduce a fast, secure and robust scheme for digital image encryption using chaotic system of Lorenz, 4D hyper-chaotic system and the Secure Hash Algorithm SHA-1. The encryption process consists of three layers: sub-vectors confusion and two-diffusion process. In the first layer we divide the plainimage into sub-vectors then, the position of each one is changed using the chaotic index sequence generated with chaotic attractor of Lorenz, while the diffusion layers use hyper-chaotic system to modify the values of pixels using an XOR operation. The results of security analysis such as statistical tests, differential attacks, key space, key sensitivity, entropy information and the running time are illustrated and compared to recent encryption schemes where the highest security level and speed are improved.
一种使用混沌、超混沌系统和安全哈希算法SHA-1的新型图像加密方案
本文介绍了一种利用Lorenz混沌系统、4D超混沌系统和安全哈希算法SHA-1实现数字图像加密的快速、安全、鲁棒的方案。加密过程包括三层:子向量混淆和二次扩散过程。在第一层中,我们将平面图像划分为子向量,然后使用混沌吸引子生成的混沌索引序列改变每个子向量的位置,而扩散层则使用超混沌系统通过异或操作修改像素值。对统计测试、差分攻击、密钥空间、密钥灵敏度、熵信息和运行时间等安全分析结果进行了说明,并与提高了最高安全级别和速度的最新加密方案进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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