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Theoretical analysis of information watermarking in wavelet-based video compression

机译:基于小波的视频压缩中信息水印的理论分析

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Embedding audio bits into images for transmission of video data alleviates the synchronization problem common in video transmission techniques. We continue work combining audio or other data bits and images into one file using digital watermarking techniques to correct the synchronization problem. The work compresses the file by using wavelet image coefficients and implementing bit plane coding. Our work encompasses incorporating five free variables into the watermark/compression technique. These variables are watermark robustness, number of coding iterations, number of image coefficients, number of watermarked data bits, and number of watermarked error correcting bits. By altering these variables, four measurements of the output will change. The four measurements are the watermarked bit error rate, the image quality, the compression ratio, and the amount of watermarked data. We will theoretically demonstrate how the variables impact these measurements. Experimental results on real video data will support our theoretical findings. By analyzing each video frame, an automated system will be able to choose the optimal values of the five variables to meet the given user constraints for the measurements.
机译:将音频比特嵌入图像中以传输视频数据可以缓解视频传输技术中常见的同步问题。我们将继续使用数字水印技术将音频或其他数据位和图像组合到一个文件中,以纠正同步问题。该工作通过使用小波图像系数并实现位平面编码来压缩文件。我们的工作包括将五个自由变量合并到水印/压缩技术中。这些变量是水印鲁棒性,编码迭代数,图像系数数,带水印数据位的数量和带水印纠错位的数量。通过更改这些变量,将更改输出的四个测量值。这四个测量是水印误码率,图像质量,压缩率和水印数据量。我们将在理论上说明变量如何影响这些测量。真实视频数据的实验结果将支持我们的理论发现。通过分析每个视频帧,自动化系统将能够选择五个变量的最佳值,以满足测量的给定用户约束。

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