Yasser Ibrahim, Mohamed Mohamed A, Samra Ahmed S, Khalifa Fahmi
Communications and Electronics Engineering Department, Nile Higher Institute for Engineering and Technology, Mansoura 35524, Egypt.
Electronics and Communications Engineering Department, Faculty of Engineering, Mansoura University, Mansoura 35516, Egypt.
Entropy (Basel). 2020 Nov 4;22(11):1253. doi: 10.3390/e22111253.
Chaos-based encryption has shown an increasingly important and dominant role in modern multimedia cryptography compared with traditional algorithms. This work proposes novel chaotic-based multimedia encryption schemes utilizing 2D alteration models for high secure data transmission. A novel perturbation-based data encryption for both confusion and diffusion rounds is proposed. Our chaotification structure is hybrid, in which multiple maps are combined combines for media encryption. Blended chaotic maps are used to generate the control parameters for the permutation (shuffling) and diffusion (substitution) structures. The proposed schemes not only maintain great encryption quality reproduced by chaotic, but also possess other advantages, including key sensitivity and low residual clarity. Extensive security and differential analyses documented that the proposed schemes are efficient for secure multimedia transmission as well as the encrypted media possesses resistance to attacks. Additionally, statistical evaluations using well-known metrics for specific media types, show that proposed encryption schemes can acquire low residual intelligibility with excessive nice recovered statistics. Finally, the advantages of the proposed schemes have been highlighted by comparing it against different state-of-the-art algorithms from literature. The comparative performance results documented that our schemes are extra efficacious than their data-specific counterpart methods.
与传统算法相比,基于混沌的加密在现代多媒体密码学中显示出越来越重要和主导的作用。这项工作提出了利用二维变换模型的新型基于混沌的多媒体加密方案,用于高安全数据传输。提出了一种用于混淆和扩散轮次的基于扰动的数据加密方法。我们的混沌化结构是混合的,其中多个映射被组合用于媒体加密。混合混沌映射用于生成置换(洗牌)和扩散(替换)结构的控制参数。所提出的方案不仅保持了由混沌产生的良好加密质量,而且还具有其他优点,包括密钥敏感性和低残余清晰度。广泛的安全性和差分分析表明,所提出的方案对于安全多媒体传输是有效的,并且加密后的媒体具有抗攻击性。此外,使用针对特定媒体类型的知名指标进行的统计评估表明,所提出的加密方案可以获得低残余清晰度以及非常好的恢复统计数据。最后,通过将其与文献中不同的最新算法进行比较,突出了所提出方案的优点。比较性能结果表明,我们的方案比其针对特定数据的对应方法更有效。