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On Distortion-Compensated Dither Modulation Data-Hiding With Repetition Coding

机译:具有重复编码的失真补偿抖动调制数据隐藏

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摘要

An exhaustive analysis of the distortion-compensated dither modulation (DC-DM) data-hiding method with repetition coding is presented. Two decoding strategies, maximum likelihood lattice decoding and Euclidean distance decoding, are discussed and some simplifications presented. An exact performance analysis in terms of the bit error rate (BER) is given; such an exact analysis is currently not available in the literature. Two methods for computing the exact BER and several approximations and bounds, most of them in closed form, are provided. These approximations are employed to propose two novel improvements on the standard DC-DM method with repetition: the use of a weighted Euclidean distance, with optimizable weights, and a vector form of the distortion compensation parameter. Both account for significant performance improvements. DC-DM is compared with quantization methods in the projected domain, showing worse performance against additive noise attacks but higher robustness to cropping attacks. A performance analysis of DC-DM under coarse quantization that can be specialized to JPEG compression is also supplied. All our results are validated with numerical simulations with both synthetic data and real images.
机译:提出了对重复编码失真补偿抖动调制(DC-DM)数据隐藏方法的详尽分析。讨论了两种解码策略,最大似然格解码和欧几里德距离解码,并给出了一些简化方法。根据误码率(BER)给出了精确的性能分析;这种精确的分析目前尚无文献报道。提供了两种计算精确BER的方法以及几种近似值和界限,其中大多数为封闭形式。使用这些近似值可以对标准DC-DM方法进行重复性的改进,以提出两个新颖的改进:使用加权欧几里得距离(具有可优化的权重)和失真补偿参数的矢量形式。两者都可以显着改善性能。将DC-DM与投影域中的量化方法进行了比较,显示出对加性噪声攻击的性能较差,但对裁剪攻击的鲁棒性更高。还提供了可以专门用于JPEG压缩的粗量化下DC-DM的性能分析。我们所有的结果均通过包含合成数据和真实图像的数值模拟进行了验证。

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