DocumentCode :
66143
Title :
Anisotropic Sampling of Planar and Two-Manifold Domains for Texture Generation and Glyph Distribution
Author :
Kratz, Andrea ; Baum, Daniel ; Hotz, Ingrid
Author_Institution :
Zuse Inst. Berlin, Berlin, Germany
Volume :
19
Issue :
11
fYear :
2013
fDate :
Nov. 2013
Firstpage :
1782
Lastpage :
1794
Abstract :
We present a new method for the generation of anisotropic sample distributions on planar and two-manifold domains. Most previous work that is concerned with aperiodic point distributions is designed for isotropically shaped samples. Methods focusing on anisotropic sample distributions are rare, and either they are restricted to planar domains, are highly sensitive to the choice of parameters, or they are computationally expensive. In this paper, we present a time-efficient approach for the generation of anisotropic sample distributions that only depends on intuitive design parameters for planar and two-manifold domains. We employ an anisotropic triangulation that serves as basis for the creation of an initial sample distribution as well as for a gravitational-centered relaxation. Furthermore, we present an approach for interactive rendering of anisotropic Voronoi cells as base element for texture generation. It represents a novel and flexible visualization approach to depict metric tensor fields that can be derived from general tensor fields as well as scalar or vector fields.
Keywords :
computational geometry; data visualisation; image texture; interactive systems; relaxation theory; rendering (computer graphics); sampling methods; tensors; anisotropic Voronoi cells; anisotropic sample distribution generation; anisotropic triangulation; aperiodic point distribution; base element; flexible visualization approach; glyph distribution; gravitational-centered relaxation; interactive rendering; intuitive design parameters; isotropically shaped sample; metric tensor fields; planar domain; texture generation; time-efficient approach; two-manifold domains; Anisotropic magnetoresistance; Sampling methods; Tensile stress; Texture analysis; Tensor visualization; anisotropic sampling; texture generation;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2013.83
Filename :
6517193
Link To Document :
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