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A Secure Semi-Fragile JPEG Image Authentication Scheme Based On Discrete Cosine Transform

机译:基于离散余弦变换的安全半易碎JPEG图像认证方案

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The challenge in the case of image authentication is that in many cases images need to be subjected to non malicious operations like compression, so the authentication techniques need to be compression tolerant. In this paper we propose an image authentication system that remains tolerant to JPEG lossy compression operations. A scheme for JPEG grey scale images is proposed based on a data embedding method that utilizes a secret key and a secret mapping vector in the frequency domain. An encrypted feature vector extracted from the frequency domain, is embedded redundantly, and invisibly in the marked image. On the receiver side, the feature vector from the received image is derived again and compared against the extracted watermark to verify the integrity and authenticity. The proposed scheme is robust against JPEG compression up to a maximum compression of approximately 80%. but sensitive to malicious attacks such as cutting and pasting. The experimental results demonstrate that the proposed algorithm has the advantages such as simple computation complexity, security, and good robustness to JPEG compression, and efficient detection of tampering, as well as good tolerance to noise.
机译:在图像认证的情况下的挑战是,在许多情况下,需要对图像进行不可恶意操作,如压缩,因此需要压缩容忍的认证技术。在本文中,我们提出了一种图像认证系统,该系统对JPEG损耗压缩操作保持容忍。基于数据嵌入方法提出了一种JPEG灰度级图像的方案,该数据嵌入方法利用频域中的秘密密钥和秘密映射向量。从频域中提取的加密特征向量冗余地嵌入,不可知在标记的图像中。在接收器侧,再次导出来自接收图像的特征向量并与提取的水印进行比较以验证完整性和真实性。该方案对JPEG压缩的强大稳健至最大压缩约80%。但对恶意攻击等敏感,如切割和粘贴。实验结果表明,该算法具有简单的计算复杂性,安全性和对JPEG压缩的良好鲁棒性以及高效检测篡改的优点,以及对噪声的良好耐受性等优点。

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