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A Correlation-Based Watermarking Technique of 3-D Meshes via Cyclic Signal Processing

机译:基于循环信号处理的基于相关性的3D网格水印技术

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This paper describes a blind watermarking scheme through cyclic signal processing. Due to various rapid networks, there is a growing demand of copyright protection for multimedia data. As efficient watermarking of images, there exist two major approaches: a quantization-based method and a correlation-based method. In this paper, we proposes a correlation-based watermarking technique of three-dimensional (3-D) polygonal models using the fast Fourier transforms (FFTs). For generating a watermark with desirable properties, similar to a pseudonoise signal, an impulse signal on a two-dimensional (2-D) space is spread through the FFT, the multiplication of a complex sinusoid signal, and the inverse FFT. This watermark, i.e., spread impulse signal, in a transform domain is converted to a spatial domain by an inverse wavelet transform, and embedded into 3-D data aligned by the principle component analysis (PCA). In the detection procedure, after realigning the watermarked mesh model through the PCA, we map the 3-D data on the 2-D space via block segmentation and averaging operation. The 2-D data are processed by the inverse system, i.e., the FFT, the division of the complex sinusoid signal, and the inverse FFT. From the resulting 2-D signal, we detect the position of the maximum value as a signature. For 3-D bunny models, detection rates and information capacity are shown to evaluate the performance of the proposed method.
机译:本文介绍了一种通过循环信号处理的盲水印方案。由于各种快速的网络,对多媒体数据的版权保护的需求增长。作为图像的有效水印,存在两种主要方法:基于量化的方法和基于相关的方法。在本文中,我们提出了一种使用快速傅立叶变换(FFT)的三维(3-D)多边形模型的基于相关性的水印技术。为了产生具有期望性质的水印,类似于伪噪声信号,通过FFT,复正弦信号的乘法和逆FFT来扩展二维(2-D)空间上的脉冲信号。通过逆小波变换将变换域中的该水印,即扩展脉冲信号,转换为空间域,并通过主成分分析(PCA)将其嵌入对准的3D数据中。在检测过程中,通过PCA重新排列水印网格模型后,我们通过块分割和求平均操作将3-D数据映射到2-D空间上。通过逆系统即FFT,复正弦信号的除法和逆FFT来处理2-D数据。从产生的二维信号中,我们检测出最大值的位置作为签名。对于3-D兔子模型,显示了检测率和信息容量以评估所提出方法的性能。

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