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Practical key length of watermarking systems

机译:水印系统实用密钥长度

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摘要

The paper proposes a new approach for evaluating the security levels of digital watermarking schemes, which is more in line with the formulation proposed in cryptography. We first exhibit the class of equivalent decoding keys. These are the keys allowing a reliable decoding of contents watermarked with the secret key. Then, we evaluate the probability that the adversary picks an equivalent key. The smaller this probability, the higher the key length. This concept is illustrated on two main families of watermarking schemes: DC-QIM (Distortion Compensation Quantization Index Modulation) and SS (Spread Spectrum). The trade-off robustness-security is again verified and gives some counter-intuitive results: For instance, the security of SS is a decreasing function of the length of the secret vector at a fixed Document to Watermark power ratio. Additionally, under the Known Message Attack, the practical key length of the watermarking scheme rapidly decreases to 0 bits per symbol.
机译:本文提出了一种评估数字水印方案安全级别的新方法,该方法与密码学中提出的公式更加吻合。我们首先展示等效解码密钥的类别。这些密钥允许对带有秘密密钥的带有水印的内容进行可靠的解码。然后,我们评估对手选择等效密钥的可能性。此概率越小,密钥长度就越大。在两个主要的水印方案系列中说明了这一概念:DC-QIM(失真补偿量化指数调制)和SS(扩频)。权衡的鲁棒性-安全性再次得到验证,并给出了一些与直觉相反的结果:例如,SS的安全性是固定文档与水印功率比下秘密向量长度的递减函数。另外,在已知消息攻击下,加水印方案的实际密钥长度迅速减少到每个符号0位。

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