Blind Multipurpose Image Watermarking with Perfect Security

Sorour Sheidani, Ziba Eslami
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Abstract

Nowadays, from one hand multimedia authentication techniques are widely used to achieve trustworthiness, on the other hand, due to the rapid growth of image processing software technologies, having a secure method to protect the copyright of these data seems fairly essential. Multipurpose watermarking emerged in order to simultaneously accomplish multimedia authentication and copyright protection. In this paper, we propose a multipurpose watermarking method which achieves perfect security, the ability to detect tampered areas of the watermarked image as well as a lower BER rate, at the cost of reducing capacity by half. This watermarking scheme is blind in the sense that on the receiver side, neither the original host image nor the embedded watermark is needed for ownership watermark extraction or tamper detection. Experimental results show that our method is able to reconstruct extracted tampered watermarks even after various attacks such as JPEG compression, average filtering, gamma correction, median filtering, speckle noise, JPEG compression, sharpening, Wiener filter, and median filtering. Comparisons are provided with other multipurpose watermarking methods which primarily aim at simultaneous goals of copyright protection and authentication. We also show the superiority of our proposed method to three watermarking methods attaining these objectives on a one-goal-at-a-time basis.
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具有完美安全性的盲多用途图像水印
如今,一方面多媒体认证技术被广泛用于实现可信赖性,另一方面,由于图像处理软件技术的快速发展,有一种安全的方法来保护这些数据的版权显得非常必要。为了同时实现多媒体认证和版权保护,多功能水印应运而生。在本文中,我们提出了一种多用途的水印方法,该方法既能达到良好的安全性,又能检测出水印图像的篡改区域,而且误码率较低,但代价是将容量减少一半。该水印方案是盲的,即在接收端,既不需要原始主机图像,也不需要嵌入水印进行所有权水印提取或篡改检测。实验结果表明,即使经过JPEG压缩、平均滤波、伽玛校正、中值滤波、散斑噪声、JPEG压缩、锐化、维纳滤波和中值滤波等多种攻击,该方法仍能重建提取的篡改水印。并与其他多用途水印方法进行了比较,这些方法主要是为了同时实现版权保护和身份验证的目标。我们还展示了我们所提出的方法与三种水印方法相比的优越性,这些方法在一次一个目标的基础上实现了这些目标。
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