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Optical image encryption method based on incoherent imaging and polarized light encoding

机译:基于相干成像和偏振光编码的光学图像加密方法

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摘要

We propose an incoherent encoding system for image encryption based on a polarized encoding method combined with an incoherent imaging. Incoherent imaging is the core component of this proposal, in which the incoherent point-spread function (PSF) of the imaging system serves as the main key to encode the input intensity distribution thanks to a convolution operation. An array of retarders and polarizers is placed on the input plane of the imaging structure to encrypt the polarized state of light based on Mueller polarization calculus. The proposal makes full use of randomness of polarization parameters and incoherent PSF so that a multidimensional key space is generated to deal with illegal attacks. Mueller polarization calculus and incoherent illumination of imaging structure ensure that only intensity information is manipulated. Another key advantage is that complicated processing and recording related to a complex-valued signal are avoided. The encoded information is just an intensity distribution, which is advantageous for data storage and transition because information expansion accompanying conventional encryption methods is also avoided. The decryption procedure can be performed digitally or using optoelectronic devices. Numerical simulation tests demonstrate the validity of the proposed scheme. Published by Elsevier B.V.
机译:我们提出了一种基于偏振编码方法的图像加密编码系统,基于与非相干成像组合的图像加密。不连贯的成像是该提案的核心组成部分,其中成像系统的非相干点扩展功能(PSF)用作编码输入强度分布的主键,因为卷积操作。将延迟器和偏振器阵列放置在成像结构的输入平面上,以加密基于穆勒偏振微分的光的光偏振状态。该提案充分利用了极化参数和非相干PSF的随机性,从而产生了多维关键空间来处理非法攻击。 Mueller偏振模积和成像结构的不连贯照射确保仅操纵强度信息。另一个关键优点是避免了与复值信号相关的复杂处理和记录。编码信息仅是强度分布,这对于数据存储和转换是有利的,因为还避免了伴随传统加密方法的信息扩展。解密过程可以数字方式或使用光电器件执行。数值模拟试验证明了所提出的方案的有效性。由elsevier b.v出版。

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