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Asymmetrical and Biometric Encrypted Optical Scanning Holography (ABE-OSH)

机译:不对称和生物识别的光学扫描全息术(ABE-OSH)

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摘要

In this article, we report an optical scanning holography (OSH) system that is equipped with biometric and the asymmetrical Rivest-Shamir-Adleman (RSA) encryption. Past research works have demonstrated that either encryption alone is vulnerable to certain types of attacks if both the encrypted and source data are available. Essentially, given sufficient time and computation power, it is possible to deduce the encryption key from these two datasets. Our proposed method can be divided into two stages. In the first stage, biometric encryption is incorporated in the OSH system to convert the image of a physical object into a biometric encrypted hologram. In the second stage, the biometric encrypted hologram is encoded with differential pulse code modulation (DPCM), and the polarity of the DPCM data is encrypted with the RSA algorithm. Due to the cascade of these two stages, it is not possible to identify both the source and encrypted data in each stage, and use them to hack the decryption key. We have demonstrated fast capturing and encryption of physical objects with our proposed method, and shown that that when either the biometric or the RSA encryption key is missing, the hologram cannot be recovered and the reconstructed image is incomprehensible. While we have demonstrated our idea with OSH, the proposed technique is applicable to any digital holographic systems.
机译:在本文中,我们报告了一种光学扫描全息术(OSH)系统,该系统配备了生物识别和不对称的RIVEST-Shamir-Adleman(RSA)加密。过去的研究工作已经证明,如果加密和源数据都可用,则单独的加密容易受到某些类型的攻击。基本上,给定足够的时间和计算能力,可以从这两个数据集中推导加密密钥。我们所提出的方法可以分为两个阶段。在第一阶段,生物识别加密结合在OSH系统中,以将物理对象的图像转换为生物识别的加密全息图。在第二阶段,使用差分脉冲码调制(DPCM)编码生物识别加密全息图,并且DPCM数据的极性用RSA算法加密。由于这两个阶段的级联,因此无法识别每个阶段中的源和加密数据,并使用它们来破解解密密钥。我们已经通过所提出的方法展示了物理对象的快速捕获和加密,并且如缺少生物识别或RSA加密密钥,无法恢复全息图,重建图像是不可理解的。虽然我们对OSH展示了我们的想法,但所提出的技术适用于任何数字全息系统。

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