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首页> 外文期刊>Journal of Engineering & Applied Sciences >Color Image Cryptography Based on Fraction Order Chaotic Systems
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Color Image Cryptography Based on Fraction Order Chaotic Systems

机译:基于分数顺序混沌系统的彩色图像密码学

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摘要

The increasing of demands for securely transfer of images through the internet and wireless systems gave the importance to cryptography systems. In this paper, image encryption technique come with chaos. Lorenz and Chua chaotic systems with fractional order that produces enlarged in key space are used to encrypt image. A high robustness and security for encryption process are guaranteed by using these chaotic systems with all properties which are owned such randomness, nonlinearity and the large key space. From the results, the low Peak Signal to Noise Ratio (PSNR) (around 8 dB) when any small change in any of the system parameters and perfect PSNR for the decrypted image. That shows the encrypted key has a large sensitivity to small change in any parameters of Lorenz or Chua chaotic systems. Consequently, a high complicated image encryption is suggested using the proposed system that is shown here.
机译:通过互联网和无线系统安全地对图像进行安全地转移图像的需求,对加密系统的重要性具有重要性。 在本文中,图像加密技术具有混沌。 Lorenz和Chua混沌系统具有在关键空间中扩大的分数顺序用于加密图像。 通过使用具有所有属性的混沌系统,可以保证对加密过程的高稳健性和安全性,这些属性具有拥有这种随机性,非线性和大关键空间。 从结果,当任何系统参数的任何小变化和用于解密图像的完美PSNR时,从结果中到噪声比(PSNR)(PSNR)(PSNR)(PSNR)(PSNR)。 显示加密密钥对Lorenz或Chua混沌系统的任何参数的小变化具有很大的敏感性。 因此,使用此处示出的所提出的系统建议了高复杂的图像加密。

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