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Reversible watermarking for 2D vector maps based on normalized vertices

机译:基于归一化顶点的2D矢量图的可逆水印

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摘要

For 2D vector maps, obtaining rotation, uniform scaling and translation (RST) invariance property, embedding distortion control and high capacity is a technically challenging task of existing reversible watermarking schemes. Using the idea of normalized vertices, we propose a method that not only tolerates RST transformations but also provides good invisibility and high capacity. In particular, we propose transforming the vertices to a new coordinate system, calculating a normalized vertex for each transformed vertex, and embedding watermarks into the normalized vertices using an improved quantization index modulation (IQIM) based reversible watermarking technique. While the embedding into each coordinate of every normalized vertex provides RST invariance property and high capacity, the selection of the embedding parameter ensures the control of the embedding distortions. Experimental results show that the proposed scheme provides good reversibility and is robust against RST attacks. The comparisons with existing reversible watermarking schemes show that this scheme provides embedding distortion control and higher capacity.
机译:对于2D矢量地图,获得旋转,均匀缩放和平移(RST)不变性,嵌入失真控制和高容量是现有可逆水印方案的技术难题。使用归一化顶点的想法,我们提出了一种方法,该方法不仅可以容忍RST转换,而且还可以提供良好的不可见性和高容量。特别是,我们建议将顶点转换为新的坐标系,为每个转换后的顶点计算一个归一化的顶点,然后使用基于改进的量化指数调制(IQIM)的可逆水印技术将水印嵌入到归一化的顶点中。嵌入到每个规范化顶点的每个坐标中可提供RST不变性和高容量,而嵌入参数的选择可确保控制嵌入失真。实验结果表明,该方案具有良好的可逆性,对RST攻击具有鲁棒性。与现有可逆水印方案的比较表明,该方案提供了嵌入失真控制和更高的容量。

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