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High-efficiency optical image authentication scheme based on ghost imaging and block processing

机译:基于Ghost成像和块处理的高效光学图像认证方案

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摘要

Ghost imaging (GI) is a hot technique in optical image encryption and authentication field due to its remarkable characteristics, such as strong ability against turbulence and high security. However, since the large number of private keys need to be stored and transmitted in the cryptosystems based on GI technique, the practical application of these cryptosystems is limited. To address this issue, we propose a high-efficiency optical image authentication scheme in which the private keys are a series of one-dimensional (1D) vectors used in block division. Each obtained reference intensity pattern behaves as a public key after being divided by two block-division vectors into blocks and further processed. Unlike the traditional GI based optical encryption and authentication schemes in which a series of two-dimensional (2D) phase-only masks (POMs) or reference intensity patterns are used as principal keys to be transmitted privately, the private keys in our proposed system to be transmitted are a series of 1D vectors. Consequently, the burden of the storage or transmission of private keys can be decreased considerably and high efficiency can be achieved. Since the numbers, sizes, repetition times and arrangement sequences of elements in the vectors could vary in a wide range, the vector selection possess high randomness, which guarantees the security of the proposed system. Using the private and the public keys, a correct reconstructed image and successful authentication result can be obtained by the authorized users. Numerical simulations are conducted to validate the feasibility, security and ability to resist noise and occlusion of the proposed scheme.
机译:Ghost Imaging(GI)是光学图像加密和认证领域的热技术,因为其显着的特性,例如强大的湍流能力和高安全性。然而,由于基于GI技术需要在密码系统中存储和传输大量私钥,因此这些密码系统的实际应用是有限的。为了解决这个问题,我们提出了一种高效的光学图像认证方案,其中私钥是块分区中使用的一系列一维(1D)矢量。在将两个块分割向量除以块并进一步处理之后,每个获得的参考强度模式表现为公钥。与基于GI的传统GI的光学加密和认证方案不同,其中一系列二维(2D)仅相位掩模(POMS)或参考强度模式用作私下传输的主要键,我们提出的系统中的私钥传输是一系列1D矢量。因此,可以显着降低私钥的存储或传输的负担,并且可以实现高效率。由于矢量中的元件的数量,尺寸,重复时间和布置序列可以在宽范围内变化,因此矢量选择具有高随机性,从而保证所提出的系统的安全性。使用私有密钥和公钥,授权用户可以获得正确的重建图像和成功的身份验证结果。进行数值模拟以验证抵抗所提出的方案的噪声和遮挡的可行性,安全性和能力。

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