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Modulated Lattice Vector Quantization: How to Make Quantization Index Modulation an Efficient Variable Rate Source Coder

机译:调制格向量量化:如何使量化指数调制成为有效的可变速率源编码器

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摘要

The design of a variable rate joint watermarking and compression (JWC) scheme is examined in this paper. The proposed approach, called modulated lattice vector quantization (MLVQ), is based on dither modulation quantization index modulation (DM-QIM) which allows for embedding information while maintaining good coding performance. In the first part, we propose a specific indexing method to make MLVQ with a multidimensional codebook feasible. Furthermore, a quantization parameter estimation was designed to ensure the invertibility of the embedding. The limitations of the compression performance of JWC schemes are studied in the second part. We show the existence of a coding rate lower bound which depends mainly on the codebook characteristics and dramatically decreases coding performance. To circumvent this drawback, two improved MLVQ schemes are proposed. In the first one, called arbitrary MLVQ, the embedding is performed on part of the signal to ensure a low embedding/coding ratio. In the second one, called deadzone MLVQ, the coding efficiency is further improved by maintaining the sparsity of the quantized host signal. It consists in excluding the sparse signal components from the embedding process then thresholding them. These schemes both applying wavelet coding demonstrate their efficiency as variable rate coders.
机译:本文研究了可变速率联合水印和压缩(JWC)方案的设计。所提出的称为调制晶格矢量量化(MLVQ)的方法基于抖动调制量化索引调制(DM-QIM),它可以在保持良好编码性能的同时嵌入信息。在第一部分中,我们提出了一种特定的索引方法,以使带有多维码本的MLVQ可行。此外,设计了量化参数估计以确保嵌入的可逆性。第二部分研究了JWC方案压缩性能的局限性。我们显示了编码率下限的存在,该下限主要取决于码本的特性,并大大降低了编码性能。为了克服该缺点,提出了两种改进的MLVQ方案。在第一个(称为任意MLVQ)中,对信号的一部分执行嵌入,以确保较低的嵌入/编码比。在第二个称为死区MLVQ中,通过保持量化主机信号的稀疏性进一步提高了编码效率。它包括从嵌入过程中排除稀疏信号分量,然后对其进行阈值处理。这些都应用小波编码的方案证明了它们作为可变速率编码器的效率。

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