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Multi-layer security of color image based on chaotic system combined with RP2DFRFT and Arnold Transform

机译:基于混沌系统结合RP2DFRFT和Arnold变换的彩色图像多层安全性

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摘要

The security system for RGB image information is very critical issue in current time. In this security system, we have proposed an algorithm for encryption and decryption of RGB images by using chaotic system based scrambling combined with reality preserving two dimensional discrete fractional Fourier transform (RP2DFRFT) and Arnold transform (AT). Earlier developed security system for RGB image data provides only one layer of protection either in time domain or in frequency domain. But presented cryp-tosystem provides multi-layer security for RGB image in time as well as in frequency domain with no loss of any information of red (R), green (G) and blue (B) components. The algorithms of existing techniques for the security of color images are mostly based on keys, but the proposed cryptosystem provides security of color images on the basis of the keys as well as the arrangement of used algorithms and parameters. Additionally, the use of reality preserving method not just eliminates the complexity of dealing with imaginary data, but it also enhances the efficiency of the technique by reducing the domain space to its half, at least for all the calculations involved in two dimensional DFRFT. The sensitivity analysis of the proposed technique represents that the encryption keys are very sensitive. Results on standard examples and their security and statistical analysis for color images are testimony to the robustness and appropriateness of the presented technique. This method would find a large applications in digital color image processing and security of color image transmission in open network.
机译:RGB图像信息的安全系统是当前非常关键的问题。在此安全系统中,我们提出了一种通过使用基于混沌系统的加扰结合现实保留二维离散分数阶傅里叶变换(RP2DFRFT)和阿诺德变换(AT)来加密和解密RGB图像的算法。较早开发的RGB图像数据安全系统在时域或频域仅提供一层保护。但是提出的cryp-tosystem在时间和频域为RGB图像提供了多层安全性,而不会丢失任何红色(R),绿色(G)和蓝色(B)信息。用于彩色图像安全性的现有技术的算法主要基于密钥,但是所提出的密码系统基于密钥以及所使用的算法和参数的布置来提供彩色图像的安全性。另外,使用现实保存方法不仅消除了处理虚数据的复杂性,而且还通过将域空间减小一半来提高了该技术的效率,至少对于二维DFRFT中涉及的所有计算而言。所提出技术的敏感性分析表明,加密密钥非常敏感。标准示例的结果及其对彩色图像的安全性和统计分析证明了所提出技术的鲁棒性和适当性。该方法将在数字彩色图像处理和开放网络中彩色图像传输的安全性中找到广阔的应用前景。

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