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首页> 外文期刊>Optics and Lasers in Engineering >Multiple-information security system using key image phase and chaotic random phase encoding in Fresnel transform domain
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Multiple-information security system using key image phase and chaotic random phase encoding in Fresnel transform domain

机译:菲涅耳变换域中采用关键图像相位和混沌随机相位编码的多信息安全系统

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摘要

A novel multiple information security system based on key image phase and chaotic random phase encoding is proposed. First, a key color image is separated into R, G, and B channels. Each channel of key image is scrambled by using a chaotic permutation method based on the two-coupled logistic maps and then key phase mask is produced. Second, secret color image is split into R, G, and B channels. Each channel of secret image is phase encoded and modulated by corresponding key phase mask and chaotic random phase mask. Each modulated channel of authenticated users is combined independently together to get three resultant channels, which are Fresnel transformed to obtain corresponding encrypted channels. The parameters of key phase mask and chaotic random phase mask are exploited as decryption keys, which provide nonlinearity to proposed system. Consequently, it circumvents potential attacks. The remarkable advantage of the proposed system is introduction of key phase mask for an individual user, as the key phase mask having multiple decryption keys is constructed by scrambled key image of an individual user. Moreover, the storage, transmission and management of decryption keys are convenient. The proposed system can be executed by using a simple hybrid optoelectronic system. Numerical simulation results demonstrate the viability and efficiency of the proposed system.
机译:提出了一种基于关键图像相位和混沌随机相位编码的新型多信息安全系统。首先,将关键彩色图像分为R,G和B通道。通过基于两对逻辑图的混沌置换方法对关键图像的每个通道进行加扰,然后生成关键相位掩码。其次,秘密彩色图像分为R,G和B通道。秘密图像的每个通道都通过相应的关键相位掩码和混沌随机相位掩码进行相位编码和调制。经过身份验证的用户的每个调制通道独立组合在一起,以获得三个结果通道,这些通道经过菲涅耳变换以获得相应的加密通道。密钥相位掩码和混沌随机相位掩码的参数被用作解密密钥,这为所提出的系统提供了非线性。因此,它规避了潜在的攻击。所提出的系统的显着优点是为单个用户引入了密钥相位掩码,因为具有多个解密密钥的密钥相位掩码是由单个用户的加扰密钥图像构成的。而且,解密密钥的存储,传输和管理很方便。所提出的系统可以通过使用简单的混合光电系统来执行。数值仿真结果表明了该系统的可行性和有效性。

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