The frequent exchange of multimedia information in the present era projects an increasing demand for copyright protection. In this work, we propose a novel audio zero-watermarking technology based on graph Fourier transform for enhancing the robustness with respect to copyright protection. In this approach, the combined shift operator is used to construct the graph signal, upon which the graph Fourier analysis is performed. The selected maximum absolute graph Fourier coefficients representing the characteristics of the audio segment are then encoded into a feature binary sequence using K-means algorithm. Finally, the resultant feature binary sequence is XOR-ed with the watermark binary sequence to realize the embedding of the zero-watermarking. The experimental studies show that the proposed approach performs more effectively in resisting common or synchronization attacks than the existing state-of-the-art methods.
翻译:当今时代频繁的多媒体信息交流预测了对版权保护的日益增长的需求。 在这项工作中,我们提议了一种新型的音频零水标记技术,以图示Fourier变换为基础,以加强版权保护的稳健性。在这种方法中,使用组合式转换操作器构建图形信号,以此进行图示Fourier分析。代表音频段特性的选定最大绝对数字Fourier系数随后被用K手段算法编码成一个特征二进制序列。最后,由此产生的特征二进制序列是XOR与水标记二进制序列结合,以实现零水标记的嵌入。实验研究表明,拟议方法在抵制共同或同步攻击方面比现有最新方法更有效。