基于随机高斯噪声的增强光学双相位图像加密

K. Okokpujie, Damola Gideon Akinola, Innocent Nwokolo, Olisaemeka Isife, Oghorchukwuyem Obiazi, Oghenetega Owivri
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引用次数: 0

摘要

数字化时代的到来使得图像安全成为必然,为此,提出了一种基于双随机相位编码改进的非对称加密算法。该算法利用高斯随机噪声来提高现有方法的安全性,并在MATLAB 2020a软件上实现。仿真结果表明,与改进后的方法相比,现有方法的峰信比(0.3304)略有降低,均方误差(均方误差)有所增加。采用增强型双随机相位编码(EDRPE)加密的图像,由于在加密过程中引入了随机高斯噪声作为掩模的组成部分之一,因此具有很强的防入侵能力。但是,恢复后的图像会产生轻微的噪声影响,对接收机来说不明显。仿真结果验证了该算法抗安全攻击的潜力,但不能消除噪声的存在。
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Enhanced Optical Double Phase Image Encryption Using Random Gaussian Noise
The advent of digitalization makes image security inevitable as a result of that, an asymmetric cryptography algorithm which is based on the improvement of double random phase encoding is proposed. This algorithm makes use of Gaussian random noise to boost the security of the existing method and was implemented on the MATLAB 2020a software application. The results obtained from the simulations show a slight decrease in the peak-to-signal ratio of 0.3304 and an increase in the mean square error when comparing the existing method with the enhanced method. An image encrypted using Enhanced Double Random Phase Encoding (EDRPE) has strong protection against intruders due to the introduction of the random Gaussian noise as one of the components of the masks in the encryption process. However, a slight noisy effect is produced on the recovered image which is not obvious to the receiver. The simulation result validates the algorithm's potential against security attacks but does not eliminate the presence of noise.
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