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Quantization Index Modulation Methods for Digital Watermarking and Information Embedding of Multimedia

机译:多媒体数字水印和信息嵌入的量化指标调制方法

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Copyright notification and enforcement, authentication, covert communication, and hybrid transmis- sion applications such as digital audio broadcasting are examples of emerging multimedia applications for digital watermarking and information embedding methods, methods for embedding one signal (e.g., the digital watermark) within another “host” signal to form a third, “composite” signal. The embedding is designed to achieve efficient trade-off s among the three conflicting goals of maximizing information-embedding rate, minimizing distortion between the host signal and composite signal, and maximizing the robustness of the embedding. We present a class of embedding methods called quantization index modulation (QIM) that achieve provably good rate-distortion-robustness performance. These methods, and low--complexity realizations of them called dither modulation, are provably better than both previously proposed linear methods of spread spectrum and nonlinear methods of low-bit(s) modulation against square-error distortion--constrained intentional attacks. We also derive information-embedding capacities for the case of a colored Gaussian host signal and additive colored Gaussian noise attacks. These results imply an information embedding capacity of about 1/3 b/s of embedded digital rate for every Hertz of host signal bandwidth and every dB drop in received host signal quality. We show that QIM methods achieve performance within 1 .6 dB of capacity, and we introduce a form of post- processing we refer to as distortion compensation that, when combined with QIM, allows capacity to be achieved. In addition, we show that distortion--compensated QIM is an optimal embedding strategy against some important classes of intentional attacks as well. Finally, we report simulation results that demonstrate the performance of dither modulation realizations that can be implemented with only a few adders and scalar quantizers.
机译:版权通知和执行,认证,秘密通信和混合传输应用程序(例如数字音频广播)是用于数字水印和信息嵌入方法的新兴多媒体应用程序的示例,这些方法用于将一个信号(例如,数字水印)嵌入另一种“主机”信号形成第三个“复合”信号。嵌入被设计为在最大化信息嵌入率,最小化主机信号和复合信号之间的失真以及最大化嵌入的鲁棒性这三个相互冲突的目标之间达成有效的折衷。我们提出了一种称为量化索引调制(QIM)的嵌入方法,该方法可实现可证明良好的速率失真鲁棒性。这些方法以及它们的低复杂度实现(称为抖动调制)被证明比先前提出的线性扩频方法和针对位错失真约束的故意攻击的低位调制非线性方法都好。我们还导出了彩色高斯主机信号和加性彩色高斯噪声攻击情况下的信息嵌入能力。这些结果表明,对于主机信号带宽的每赫兹和接收主机信号质量的每dB下降,信息嵌入能力约为嵌入式数字速率的1/3 b / s。我们证明了QIM方法可在容量的.6 dB之内实现性能,并且我们引入了一种称为“失真补偿”的后处理形式,当与QIM结合使用时,可以实现容量补偿。此外,我们证明了失真补偿QIM也是针对某些重要类别的故意攻击的最佳嵌入策略。最后,我们报告了仿真结果,这些仿真结果证明了仅需几个加法器和标量量化器即可实现的抖动调制实现的性能。

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