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Practical Data-Hiding: Additive Attacks Performance Analysis

机译:实用数据隐藏:添加性攻击性能分析

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The main goal of this tutorial is to review the theory and design the worst case additive attack (WCAA) for |M|-ary quantization-based data-hiding methods using as performance criteria the error probability and the maximum achievable rate of reliable communications. Our analysis focuses on the practical scheme known as distortion compensation dither modulation (DC-DM). Prom the mathematical point of view, the problem of the worst case attack (WCA) design using probability of error as a cost function is formulated as the maximization of the average probability of error subject to the introduced distortion for a given decoding rule. When mutual information is selected as a cost function, a solution to the minimization problem should provide such an attacking noise probability density function (pdf) that will maximally decrease the rate of reliable communications for an arbitrary decoder structure. The obtained results demonstrate that, within the class of additive attacks, the developed attack leads to a stronger performance decrease for the considered class of embedding techniques than the additive white Gaussian or uniform noise attacks.
机译:本教程的主要目标是通过误差概率和可靠通信的最大可实现率和最大可实现的通信速率来审查理论和设计基于量化的数据隐藏方法的理论和设计基于量化的数据隐藏方法的最坏情况添加剂攻击(WCAA)。我们的分析侧重于称为失真补偿抖动调制(DC-DM)的实用方案。截图的数学观点,使用误差概率作为成本函数的最坏情况攻击(WCA)设计的问题被制定为对给定解码规则引入失真的误差的平均概率的最大化。 When mutual information is selected as a cost function, a solution to the minimization problem should provide such an attacking noise probability density function (pdf) that will maximally decrease the rate of reliable communications for an arbitrary decoder structure.所获得的结果表明,在添加剂攻击方面,开发的攻击导致所考虑的嵌入技术比添加剂白色高斯或均匀的噪声攻击更强的性能降低。

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