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Nonlinear optical security system based on a joint transform correlator in the Fresnel domain

机译:基于菲涅耳域中联合变换相关器的非线性光学安全系统

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摘要

A new optical security system for image encryption based on a nonlinear joint transform correlator (JTC) in the Fresnel domain (FrD) is proposed. The proposal of the encryption process is a lensless optical system that produces a real encrypted image and is a simplified version of some previous JTC-based encryption systems. We use a random complex mask as the key in the nonlinear system for the purpose of increasing the security of the encrypted image. In order to retrieve the primary image in the decryption process, a nonlinear operation has to be introduced in the encrypted function. The optical decryption process is implemented through the Fresnel transform and the fractional Fourier transform. The security system proposed in this paper preserves the shift-invariance property of the JTC-based encryption system in the Fourier domain, with respect to the lateral displacement of the key random mask in the decryption process. This system shows an improved resistance to chosen-plaintext and known-plaintext attacks, as they have been proposed in the cryptanalysis of the JTC encrypting system. Numerical simulations show the validity of this new optical security system. (C) 2014 Optical Society of America
机译:提出了一种新的基于菲涅耳域(FrD)的非线性联合变换相关器(JTC)的图像加密光学安全系统。提议的加密过程是一种无透镜的光学系统,它可以产生真实的加密图像,并且是某些以前基于JTC的加密系统的简化版本。为了提高加密图像的安全性,我们使用随机复数掩码作为非线性系统中的密钥。为了在解密过程中检索原始图像,必须在加密函数中引入非线性运算。通过菲涅耳变换和分数阶傅里叶变换实现光学解密过程。本文提出的安全系统相对于密钥随机掩码在解密过程中的横向位移,在傅里叶域中保留了基于JTC的加密系统的移位不变性。正如JTC加密系统的密码分析中所建议的那样,此系统显示出对选定明文和已知明文攻击的增强抵抗力。数值模拟表明了这种新型光学安全系统的有效性。 (C)2014年美国眼镜学会

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