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Image compression-encryption scheme based on fractional order hyper-chaotic systems combined with 2D compressed sensing and DNA encoding

机译:基于分数阶超混沌系统的图像压缩加密方案与2D压缩检测和DNA编码相结合

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摘要

An image compression-encryption scheme is proposed based on fractional order hyper-chaotic systems combined with 2D compressed sensing (CS) and DNA encoding. This scheme adopts the CS technique to cut down the size of the original image proportionally in the encryption process and the construction parameters of the CS measurement matrix are controlled by fractional order hyper-chaotic systems. The chaotic sequences generated by fractional order hyper-chaotic systems are used to dynamically control DNA encoding and DNA operation mode to improve the complexity of encryption process. The fractional order and initial value of the fractional hyper-chaotic system are used as the key of the encryption scheme, which greatly expands the key space of the proposed scheme. The proposed scheme maximizes the utilization of chaotic sequences generated by fractional order hyper-chaotic systems, and the chaotic sequences fit perfectly with the whole process of the scheme. The experimental results and security analysis show the security of the scheme against multiple attacks.
机译:基于分数阶超混沌系统建议与2D压缩检测(CS)和DNA编码组合的图像压缩加密方案。该方案采用CS技术在加密过程中按比例切断原始图像的大小,并且CS测量矩阵的施工参数由分数阶超声系统控制。由分数阶超混沌系统产生的混沌序列用于动态控制DNA编码和DNA操作模式,以提高加密过程的复杂性。分数超混沌系统的分数顺序和初始值用作加密方案的关键,这大大扩展了所提出的方案的关键空间。所提出的方案最大限度地利用分数阶超混沌系统产生的混沌序列,并且混沌序列与该方案的整个过程完全符合。实验结果和安全分析表明了方案对多次攻击的安全性。

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