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Securing multimedia colour imagery using multiple high dimensional chaos-based hybrid keys

机译:使用多个基于高维混沌的混合密钥保护多媒体彩色图像

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摘要

The rapid exchange of multimedia data over worldwide available internet and shared networks has encouraged its unauthorised access, illegal usage, disruption, alteration. Therefore, it demands efficient methods to provide security to multimedia contents for ensuring authorised access, preventing illegal disruption, alteration, etc. To meet the aforesaid needs, the authors propose an efficient encryption method to secure the multimedia colour imagery. Complex dynamic responses of multiple high-order chaotic systems are utilised to carry out image pixels shuffling and diffusion processes under the control of secret key. The pixels diffusion is done by randomly picking the actual encryption keys out of nine hybridised keys that are extracted from complex sequences of Chen, Rossler and Chua chaotic systems. Eventually, a high encryption effect is turned up in the encrypted multimedia colour images. Moreover, the shuffling and diffusion processes are made plain-image information dependent to resist the potential chosen-plaintext, chosen-ciphertext and known-plaintext attacks. The simulation results validate that the proposed method has great encryption performance and practicableness.
机译:通过全球可用的互联网和共享网络进行的多媒体数据的快速交换,鼓励了其未经授权的访问,非法使用,破坏,更改。因此,需要一种有效的方法来为多媒体内容提供安全性,以确保授权访问,防止非法破坏,篡改等。为了满足上述需求,作者提出了一种有效的加密方法来保护多媒体彩色图像。利用多个高阶混沌系统的复杂动态响应,在密钥的控制下进行图像像素的改组和扩散。通过从9种混合密钥中随机选择实际的加密密钥来完成像素扩散,这些混合密钥是从Chen,Rossler和Chua混沌系统的复杂序列中提取的。最终,在加密的多媒体彩色图像中获得了很高的加密效果。此外,改组和扩散过程被制成依赖于纯图像信息,以抵抗潜在的选择明文,选择密文和已知明文攻击。仿真结果表明,该方法具有很好的加密性能和实用性。

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