数字水印系统可实现的性能

Brian Chen, G. Wornell
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引用次数: 89

摘要

最近出现了各种数字水印应用,这些应用要求设计将一个信号(“嵌入信号”或“水印”)嵌入到另一个信号(“主信号”)中的系统。我们开发了一个框架来分析这些系统在鲁棒性、失真和嵌入率之间可实现的性能权衡。我们还描述了最近引入的一类嵌入方法,量化指标调制(QIM),其中构造了一个量化器集合,并通过与水印相关的量化器对主信号进行量化来嵌入信息。我们介绍了一种称为扩展变换抖动调制的方法的实现,其中嵌入的信息调制抖动量化器的抖动信号,该抖动量化器将主信号的投影量化到扩展向量上。我们表明QIM系统比先前提出的扩频和低比特调制系统具有相当大的性能优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achievable performance of digital watermarking systems
A variety of digital watermarking applications have emerged recently that require the design of systems for embedding one signal (the "embedded signal" or "watermark") within another signal (the "host signal"). We develop a framework for analyzing achievable performance trade-offs of these systems among robustness, distortion, and embedding rate. We also describe a recently introduced class of embedding methods, quantization index modulation (QIM), in which an ensemble of quantizers is constructed and information is embedded by quantizing the host signal with a quantizer associated with the watermark. We introduce an implementation of such a method called spread-transform dither modulation where the embedded information modulates the dither signal of a dithered quantizer, which quantizes projections of the host signal onto a spreading vector. We show that QIM systems have considerable performance advantages over previously proposed spread-spectrum and low-bit modulation systems.
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