An Improved Image Encryption Algorithm Based on Chaotic Maps

Chong Fu, Zhen-chuan Zhang, Ying-yu Cao
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引用次数: 64

Abstract

This paper proposes a 3-D Lorenz system based image encryption scheme, which improves the security and performance of the encryption system over conventional one dimension chaos based ones. The balance and correlation properties of the analog sequences generated by Lorenz system are analyzed and a pre-process method is proposed, which makes the key stream have good statistical properties. Three initial parameters of Lorenz system are combined together as one key, which greatly enlarges the key space under precision restricted condition. The encryption speed is also improved since the position permutation and grayscale substitution of a pixel can be done by one iteration operation. Besides, the encryption system is strong against adaptive parameter synchronous attack since it has more complicated structure than one dimension ones. The experimental results indicate that the algorithm is more secure and efficient than conventional ones.
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一种改进的混沌映射图像加密算法
本文提出了一种基于三维洛伦兹系统的图像加密方案,与传统的一维混沌加密方案相比,该方案提高了加密系统的安全性和性能。分析了由Lorenz系统产生的模拟序列的平衡性和相关性,提出了一种预处理方法,使密钥流具有良好的统计性能。将Lorenz系统的三个初始参数组合为一个键,在精度受限的条件下,极大地扩大了键空间。由于可以通过一次迭代操作完成像素的位置置换和灰度替换,因此提高了加密速度。此外,该加密系统的结构比一维加密系统复杂,具有较强的抗自适应参数同步攻击能力。实验结果表明,该算法比传统算法更安全、更高效。
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