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Chaos-based image encryption strategy based on random number embedding and DNA-level self-adaptive permutation and diffusion

机译:基于混沌的图像加密策略基于随机数嵌入和DNA级自适应排列和扩散

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摘要

Some image encryption algorithms are difficult to resist the chosen-plaintext attack against special images, in order to solve this problem and improve the security of the algorithm, this paper proposes a novel image encryption scheme based on the chaotic system, random number embedding and DNA-level self-adaptive permutation and diffusion. The architecture of preprocessing, permutation and diffusion is adopted. Firstly, an image preprocessing based on random number embedding (IPRNE) is presented, specifically, embed random numbers into the plain image, and then perform partition XOR operation on random numbers and their surrounding pixels to preprocess plain image. The random numbers are generated by a 4D memristive hyperchaotic system, and their embedding positions are controlled by the pixel sums of plain images. Secondly, the obtained image is encoded into a DNA matrix by use of a DNA encoding rule, and then a DNA-level self-adaptive permutation and diffusion processes are successively performed on it. Further, after decoding the diffused matrix, the cipher image is obtained. Besides, the feature information of DNA sequences of plain image is applied for disturbing the permutation and diffusion phases, which may be extracted automatically in the decryption process, and thus additional transmission and storage are avoided. Moreover, the plain image information and hyperchaotic system are integrated to design the DNA encoding /decoding rule for the plain image and mask matrix, and this can enhance the ability of the algorithm to resist chosen-plaintext attack. Experimental results and security analyses demonstrate that the proposed encryption is secure and effective, and it can be applied for image secure communication.
机译:一些图像加密算法难以抵抗特殊图像的选择明文攻击,以解决这个问题并提高算法的安全性,提出了一种基于混沌系统,随机数嵌入和DNA的新型图像加密方案 - 润版自适应排列和扩散。采用预处理,排列和扩散的体系结构。首先,呈现基于随机数嵌入(IPRNE)的图像预处理,具体地,将随机数嵌入到普通图像中,然后在随机数和周围像素上执行分区XOR操作,以预处理普通图像。随机数由4D存储器超声系统生成,并且它们的嵌入位置由普通图像的像素和的嵌入位置控制。其次,通过使用DNA编码规则,所获得的图像被编码成DNA矩阵,然后连续地执行DNA级自适应置换和扩散过程。此外,在解码漫反射矩阵之后,获得密码图像。此外,普通图像的DNA序列的特征信息被施加用于扰乱置换和扩散相,可以在解密过程中自动提取,因此避免了额外的传输和存储。此外,普通图像信息和超色度系统被集成以设计普通图像和掩模矩阵的DNA编码/解码规则,这可以增强算法抵抗被选中的攻击攻击的能力。实验结果和安全分析表明,所提出的加密是安全有效的,并且可以应用于图像安全通信。

著录项

  • 来源
    《Multimedia Tools and Applications》 |2021年第10期|16087-16122|共36页
  • 作者单位

    Henan Univ Sch Artificial Intelligence Kaifeng 475004 Peoples R China|Henan Univ Henan Key Lab Big Data Anal & Proc Kaifeng 475004 Peoples R China;

    Henan Univ Sch Artificial Intelligence Kaifeng 475004 Peoples R China|Henan Univ Henan Key Lab Big Data Anal & Proc Kaifeng 475004 Peoples R China;

    Henan Univ Sch Artificial Intelligence Kaifeng 475004 Peoples R China|Henan Univ Henan Key Lab Big Data Anal & Proc Kaifeng 475004 Peoples R China;

    Henan Univ Sch Artificial Intelligence Kaifeng 475004 Peoples R China|Henan Univ Henan Key Lab Big Data Anal & Proc Kaifeng 475004 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Random number embedding; Permutation and diffusion; Image encryption; DNA dynamic encoding;

    机译:随机数嵌入;排列和扩散;图像加密;DNA动态编码;

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