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Fourier-Mellin moment-based intertwining map for image encryption

机译:基于傅立叶素矩的图像加密的交织地图

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摘要

In this paper, a robust image encryption technique that utilizes Fourier-Mellin moments and intertwining logistic map is proposed. Fourier-Mellin moment-based intertwining logistic map has been designed to overcome the issue of low sensitivity of an input image. Multi-objective Non-Dominated Sorting Genetic Algorithm (NSGA-II) based on Reinforcement Learning (MNSGA-RL) has been used to optimize the required parameters of intertwining logistic map. Fourier-Mellin moments are used to make the secret keys more secure. Thereafter, permutation and diffusion operations are carried out on input image using secret keys. The performance of proposed image encryption technique has been evaluated on five well-known benchmark images and also compared with seven well-known existing encryption techniques. The experimental results reveal that the proposed technique outperforms others in terms of entropy, correlation analysis, a unified average changing intensity and the number of changing pixel rate. The simulation results reveal that the proposed technique provides high level of security and robustness against various types of attacks.
机译:在本文中,提出了一种利用傅立叶蛋白矩和交织逻辑图的鲁棒图像加密技术。傅立叶素矩的交互逻辑图旨在克服输入图像的低灵敏度问题。基于增强学习(MNSGA-RL)的多目标非主导分类遗传算法(NSGA-II)已被用于优化交互逻辑图的所需参数。傅立叶梅林的瞬间用于使秘密密钥更安全。此后,使用秘密键在输入图像上执行置换和扩散操作。提出的图像加密技术的性能已经在五个公知的基准图像上进行了评估,也与七个众所周知的现有加密技术进行了评估。实验结果表明,所提出的技术在熵,相关性分析,统一平均变化强度和改变像素率的数量方面优于其他技术。仿真结果表明,该技术提供了高水平的安全性和对各种类型的攻击的鲁棒性。

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