采用正交码和基于多参考的联合变换相关的光学加密系统

M. Islam, M. Karim
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引用次数: 1

摘要

本文提出了一种新的技术,通过使用加密和复用处理来提高个人身份信息或二值图像的安全性。采用正交码对给定的输入图像进行加密,以便将多个编码后的图像混合在一起,从而节省存储空间或传输带宽。采用基于多个参考的联合变换相关对复用编码后的图像进行进一步加密。将地址码按不同的量进行相移后送入四个信道。将输入图像引入信道,通过傅里叶变换得到联合功率谱信号。由此产生的信号相移,然后组合形成一个修改的JPS信号,然后进行傅里叶反变换,以产生最终的和高度安全的加密图像。在接收端,图像经过傅里叶变换并乘以用于加密的地址码。傅里叶反变换产生复用和编码图像,然后使用正交编码解码。该技术通过实现正交编码和非线性加密算法来提高安全性能,从而防止信息被非法访问或截获。通过计算机仿真对该技术的性能进行了评价。
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Optical encryption system employing orthogonal code and multiple reference-based joint transform correlation
The paper proposes a new technology to ensure enhanced security of personal identification information or binary images through the use of encryption and multiplexing processes. Orthogonal codes are employed to encrypt the given input images so that multiple encoded images can then be mixed together to save storage space or transmission bandwidth. The multiplexed and encoded image is further encrypted employing multiple reference-based joint transform correlation. The address code is fed into four channels after performing phase shifting on them by different amount. The input image is introduced to the channels to obtain joint power spectra (JPS) signals through Fourier transformation. The resultant signals are phase-shifted and then combined to form a modified JPS signal which is then inverse Fourier transformed to yield the final and highly secure encrypted image. At the receiver, the image is Fourier transformed and multiplied by the address code used in encryption. Inverse Fourier transformation yields the multiplexed and encoded image which is then decoded using orthogonal codes. The proposed technique enhances the security performance by implementing orthogonal coding and nonlinear encryption algorithms so that no unauthorized access to or interception of information is possible. Performance of the technique is evaluated through computer simulation.
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