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Abstract: |
In this paper, an image processing algorithm which is able to synthesize material textures of arbitrary shapes is proposed. The presented approach uses an arbitrary image to construct a structure layer of the material. The resulting structure layer is then used to constrain the material texture synthesis. The field of second-moment matrices is used to represent the structure layer. Many tests with various constraint images are conducted to ensure that the proposed approach accurately reproduces the visual aspects of the input material sample. The results demonstrate that the proposed algorithm is able to accurately synthesize arbitrary-shaped material textures while respecting the local characteristics of the exemplar. This paves the way toward the synthesis of 3D material textures of arbitrary shapes from 2D material samples, which has a wide application range in virtual material design and materials characterization. |
Key words: local orientation material sample second-moment matrix structure synthesis |
DOI:10.11916/j.issn.1005-9113.23073 |
Clc Number:TP391 |
Fund: |