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Performance analysis and improvement of dither modulation under the composite attacks

机译:复合攻击下抖动调制的性能分析与改进

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The first goal of this article is to analyze the performance of dither modulation (DM) against the composite attacks including valumetric scaling, additive noise and constant change. The analyzes are developed under the assumptions that the host vector and noise vector are mutually independent and both of them have independently and identically distributed components. We derive the general expressions of the probability density functions of several concerned signals and the decoding error probability. The specific theoretical results are provided for the case of generalized Gaussian host and noise. Based on the analyzes, the performance of DM is predicted for different scenarios with a high degree of accuracy and evaluated for different distribution models of host and noise signals. Numerical simulations confirm the validity of the given theoretical analyzes. Then, we address to improve the robustness of DM against valumetric scaling plus constant change. The normalized dither modulation (NDM) is presented, which works by constructing a gain-invariant vector with zero mean for quantization. Performance analysis shows that NDM is theoretically invariant to valumetric scaling and constant change and achieves similar performance to DM in other aspects. The performance of NDM is further improved by weighting the quantization errors. Experiments on real images also show the advantage of NDM over DM subject to amplitude scaling and constant change.
机译:本文的首要目标是分析抖动调制(DM)对抗复合攻击的性能,包括定量评估,附加噪声和常数变化。该分析是在宿主向量和噪声向量相互独立并且它们具有独立且相同分布的分量的假设下进行的。我们推导了几个有关信号的概率密度函数和解码错误概率的一般表达式。为广义高斯主体和噪声的情况提供了具体的理论结果。基于这些分析,可以在不同情况下以较高的准确性预测DM的性能,并针对主机和噪声信号的不同分布模型进行评估。数值模拟证实了给定理论分析的有效性。然后,我们致力于提高DM对抗评估尺度扩展和恒定变化的鲁棒性。提出了归一化抖动调制(NDM),该方法通过构造一个均值为零的增益不变矢量进行量化而起作用。性能分析表明,从理论上讲,NDM不变于度量尺度缩放和恒定变化,并且在其他方​​面达到了与DM相似的性能。通过加权量化误差可以进一步提高NDM的性能。在真实图像上进行的实验还显示了NDM优于DM的优势,因为它具有幅度缩放和恒定变化的优点。

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