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A novel image encryption scheme based on the ergodicity of baker map

机译:基于贝克地图遍历性的新型图像加密方案

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摘要

Thanks to the exceptionally good properties in chaotic systems, such as sensitivity to initial conditions and control parameters, pseudo-randomness and ergodicity, chaos-based image encryption algorithms have been widely studied and developed in recent years. A novel digital image encryption scheme based on the chaotic ergodicity of Baker map is proposed in this paper. Different from traditional encryption schemes based on Baker map, we permute the pixel positions by their corresponding order numbers deriving from the approximating points in one chaotic orbit. To enhance the resistance to statistical and differential attacks, a diffusion process is suggested as well in the proposed scheme. The proposed scheme enlarges the key space significantly to resist brute-force attack. Additionally, the distribution of gray values in the cipher-image has a random-like behavior to resist statistical analysis. The proposed scheme is robust against cropping, tampering and noising attacks as well. It therefore suggests a high secure and efficient way for real-time image encryption and transmission in practice.
机译:由于混沌系统具有优异的性能,例如对初始条件和控制参数的敏感性,伪随机性和遍历性,近年来,基于混沌的图像加密算法得到了广泛的研究和开发。提出了一种基于贝克地图遍历性的数字图像加密新方案。与传统的基于Baker映射的加密方案不同,我们通过从一个混沌轨道中的逼近点得出的像素序号对像素位置进行置换。为了增强对统计和差分攻击的抵抗力,在提议的方案中还建议了扩散过程。所提出的方案显着地扩大了抵抗暴力攻击的关键空间。此外,密码图像中的灰度值分布具有类似随机的行为,可以抵抗统计分析。所提出的方案还具有抵抗裁剪,篡改和噪声攻击的鲁棒性。因此,在实践中提出了一种用于实时图像加密和传输的高度安全和有效的方法。

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