DocumentCode
1458915
Title
Generalized unstructured decimation [computer graphics]
Author
Renze, Kevin J. ; Oliver, James H.
Author_Institution
Tech. Services Div., Caterpillar Inc., Peoria, IL, USA
Volume
16
Issue
6
fYear
1996
fDate
11/1/1996 12:00:00 AM
Firstpage
24
Lastpage
32
Abstract
Decimation describes the process of removing entities (such as polygons) from a geometric representation. The goal is to intelligently reduce the number of primitives required to accurately model the problem of interest. The work described in the article was originally motivated by the need for efficient and robust decimation of volume tessellations, that is, unstructured tetrahedrizations. Existing surface-based decimation schemes do not generalize to volumes. The technique allows local, dynamic vertex removal from an unstructured tetrahedrization while preserving the initial tessellation topology and boundary geometry. The research focuses on vertex removal methodology, not on the formulation of decimation criteria. In practice, criteria for removing vertices are application specific. The basis of the algorithm is a unique and general method to classify a triangle with respect to a nonconvex polygon. The resulting decimation algorithm (applicable to both surface and volume tessellations) is robust and efficient because it avoids floating-point classification computations
Keywords
algorithm theory; computational geometry; computer graphics; topology; boundary geometry; generalized unstructured decimation; geometric representation; local dynamic vertex removal; nonconvex polygon; primitives; robust decimation; tessellation topology; triangle classification; unstructured tetrahedrization; unstructured tetrahedrizations; vertex removal methodology; volume tessellations; Clocks; Geometry; Robustness; Topology;
fLanguage
English
Journal_Title
Computer Graphics and Applications, IEEE
Publisher
ieee
ISSN
0272-1716
Type
jour
DOI
10.1109/38.544069
Filename
544069
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