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Mesh segmentation-based non-blind watermark realization method for three-dimensional mesh model

A technology of three-dimensional mesh and mesh segmentation, which is applied in image data processing, instrumentation, image data processing, etc., can solve problems such as inability to guarantee the boundaries of block models, inconsistent boundary segmentation, and inability to obtain block results, etc.

Active Publication Date: 2013-08-14
江苏实达迪美数据处理有限公司
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Problems solved by technology

[0003] Usually, such block-based 3D mesh watermarking has the following problems: 1) After the model is attacked, the mesh block during watermark extraction cannot obtain a block result that is consistent with the original model, especially when mesh clipping occurs. 2) The method of mesh segmentation generally cannot guarantee the boundary problem of the block model, because one more point or one less point on the boundary will not affect the visual effect of mesh segmentation, so for models that depend on model segmentation boundaries The watermarking algorithm will cause the extracted watermark data to be inaccurate due to the slight inconsistency of the boundary segmentation

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  • Mesh segmentation-based non-blind watermark realization method for three-dimensional mesh model
  • Mesh segmentation-based non-blind watermark realization method for three-dimensional mesh model
  • Mesh segmentation-based non-blind watermark realization method for three-dimensional mesh model

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Embodiment Construction

[0029] In order to better understand the technical content of the present invention, specific embodiments are given together with the attached drawings for description as follows.

[0030] refer to figure 1 and figure 2 As shown, according to a preferred embodiment of the present invention, the non-blind watermarking method based on mesh segmentation for a 3D mesh model includes a watermark information embedding process and a watermark information detection process, wherein: the watermark information embedding process is: for the 3D mesh model Carry out meaningful segmentation, then calculate the robust center of gravity for each block, and convert the block from Cartesian coordinates to spherical coordinates centered on this center of gravity, and then embed the watermark by modulating the vertex norm distribution in each block Sequence; the watermark information detection process is: the model to be detected is re-aligned and re-sampled with the original model, and the blo...

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Abstract

The invention provides a mesh segmentation-based non-blind watermark realization method for a three-dimensional mesh model, which comprises a watermark information embedment process and a watermark information detection process. The watermark information embedment process comprises the steps of significantly segmenting a three-dimensional mesh model, then calculating the robust gravity center of every segmentation block, taking every gravity center as a center to convert rectangle coordinates of the corresponding segmentation block into spherical coordinates, and finally, embedding the watermark sequence through modulating climax norm distribution of every segmentation block. The watermark information detection process comprises the steps of allowing a model to be detected and a master model to be subjected to aligning and re-sampling operation, and performing watermark extraction after the segmentation block information of the model to be detected is determined. The method provided by the invention can resist single convention attack, such as simplification, shearing and noise, and shows stronger robust in resisting combined attack.

Description

technical field [0001] The invention relates to the technical field of multimedia information security, in particular to a method for realizing a non-blind watermark of a three-dimensional grid model based on grid segmentation. Background technique [0002] Since the global watermarking algorithm is not robust to cutting attacks, people propose a block-based watermarking algorithm. The main idea is to first segment or extract several meaningful or meaningless blocks from the 3D model, and then Embed the watermark data into different blocks, that is, each block has one or several sets of watermark data. When extracting the watermark, as long as there are several blocks preserved intact, then the complete watermark can be extracted from these blocks. Watermark information. [0003] Usually, such block-based 3D mesh watermarking has the following problems: 1) After the model is attacked, the mesh block during watermark extraction cannot obtain a block result that is consistent...

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Application Information

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IPC IPC(8): G06T1/00
Inventor 詹永照
Owner 江苏实达迪美数据处理有限公司