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A new chaos-based image cipher using a hash function

机译:使用哈希函数的新的基于混沌的图像密码

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This paper presents a new chaos-based image cipher using a plaintext-related permutation. The cat map and Lorenz system are employed to shuffle the positions of image pixels and generate the diffusion keystream, respectively. The control parameters of the cat map, i.e. the permutation key, are determined by the Murmur2 hash value of the original image. Owing to the avalanche property of hash functions, completely different shuffled images will be produced even if there is a tiny difference between the original ones, and it helps accelerate the diffusion process. Experimental results indicate that the proposed scheme requires only one and two cipher cycles to achieve an acceptable and a satisfactory diffusion properties, respectively, whereas two and three cipher cycles are needed by typical schemes to achieve the same properties. Thorough security analysis is carried out, and the results demonstrate the satisfactory security of the proposed scheme.
机译:本文提出了一种使用明文相关置换的新的基于混沌的图像密码。使用cat map和Lorenz系统分别对图像像素的位置进行混洗并生成扩散密钥流。猫图的控制参数,即置换密钥,由原始图像的Murmur2哈希值确定。由于哈希函数的雪崩特性,即使原始图像之间存在微小差异,也会产生完全不同的混洗图像,这有助于加快扩散过程。实验结果表明,所提出的方案分别仅需要一个和两个密码周期即可达到可接受的和令人满意的扩散性能,而典型方案则需要两个和三个密码周期来实现相同的性能。进行了彻底的安全性分析,结果证明了该方案的安全性。

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