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Optical security system employing shifted phase-encoded joint transform correlation

机译:采用移相编码联合变换相关的光安全系统

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摘要

A new optical security system is proposed using a shifted phase-encoded joint transform correlation (JTC) architecture. In the proposed technique, at first, the address code is fed into two channels where one channel is shifted by 180 deg. The output signals from both the channels are phase-masked and then added with the input image to be encrypted. The joint power spectrum (JPS) obtained from one channel is subtracted from the JPS of the other channel, and the modified JPS is inverse Fourier transformed to yield the encrypted image. For decryption, the received signal is Fourier transformed and multiplied by the phase mask and the address code, which is then inverse Fourier transformed to generate the output signal. The proposed technique does not require complex conjugate of the address code otherwise required in the classical double random phase encryption. Also the decryption result is much more enhanced when compared to the output generated by alternate JTC techniques. Computer simulation results verify that the encryption and decryption are very much secure and efficient in both noise-free and noisy conditions.
机译:提出了一种使用移相编码联合变换相关(JTC)体系结构的新型光学安全系统。在所提出的技术中,首先,地址码被馈送到两个信道中,其中一个信道被移位180度。来自两个通道的输出信号都经过相位屏蔽,然后与要加密的输入图像相加。从另一个通道的JPS中减去从一个通道获得的联合功率谱(JPS),并对经过修改的JPS进行傅立叶逆变换,以生成加密图像。为了解密,将接收到的信号进行傅立叶变换,然后与相位掩码和地址码相乘,然后对它进行傅立叶逆变换,以生成输出信号。所提出的技术不需要经典的双随机相位加密中否则需要的地址码的复杂共轭。与备用JTC技术生成的输出相比,解密结果也得到了更大的增强。计算机仿真结果证明,在无噪声和嘈杂的条件下,加密和解密都非常安全有效。

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