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Information security system by iterative multiple-phase retrieval and pixel random permutation

机译:迭代多阶段检索和像素随机置换的信息安全系统

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摘要

A novel information security system based on multiple-phase retrieval by an iterative Fresnel-transform algorithm and pixel random permutation (PRP) technique is proposed. In this method a series of phase masks cascaded in free space are employed and the phase distributions of all the masks are adjusted simultaneously in each iteration. It can achieve faster convergence and better quality of the recovered image compared with double-phase encoding and a similar approach in the spatial-frequency domain with the same number of phase masks and can provide a higher degree of freedom in key space with more geometric parameters as supplementary keys. Furthermore, the security level of this method is greatly improved by the introduction of the PRP technique. The feasibility of this method and its robustness against occlusion and additional noise attacks are verified by computer simulations. The performance of this technique for different numbers of phase masks and quantized phase levels is investigated systematically with the correlation coefficient and mean square error as convergence criterions.
机译:提出了一种基于迭代菲涅耳变换算法和像素随机置换技术的多阶段检索的新型信息安全系统。在这种方法中,采用了在自由空间中级联的一系列相位掩模,并且在每次迭代中同时调整所有掩模的相位分布。与双相编码和类似方法在空频域中使用相同数量的相位掩模相比,它可以实现更快的收敛和更好的恢复图像质量,并且可以在具有更多几何参数的关键空间中提供更高的自由度作为补充键。此外,通过引入PRP技术大大提高了该方法的安全级别。通过计算机仿真验证了该方法的可行性及其对阻塞和其他噪声攻击的鲁棒性。以相关系数和均方误差为收敛标准,系统地研究了该技术在不同数量的相位掩模和量化相位水平下的性能。

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