DocumentCode :
3383915
Title :
Length-preserved natural boundary for intrinsic parameterization
Author :
Wang, Charlie C.L.
Author_Institution :
Chinese Univ. of Hong Kong, China
fYear :
2005
fDate :
7-10 Dec. 2005
Abstract :
This paper proposes a fast approach to generate length-preserved natural boundary for intrinsic parameterization. Given a triangular mesh with disklike topology, we compute an optimal boundary for its parameterization. An optimal boundary is expected to be length-preserved with the length of every triangular edge on the boundary is invariant before and after parameterization; also, the boundary is requested to be natural where the inner angle is close to the angle excess at every boundary vertex on the given mesh. Computation of a length-preserved natural boundary is formulated as a constrained non-linear optimization problem, the procedure of solving which is in general very time-consuming. Here, we speed up the optimization by adopting the scheme of sequential linearly constrained programming. It is shown at the end of this paper that our length-preserved natural boundary could greatly improve the speed and quality of the original intrinsic parameterization.
Keywords :
computer graphics; constraint handling; mesh generation; nonlinear programming; topology; constrained nonlinear optimization; disklike topology; intrinsic parameterization; length-preserved natural boundary; optimal boundary; sequential linearly constrained programming; triangular mesh; Application software; Computer graphics; Constraint optimization; Linear programming; Mesh generation; Nonlinear distortion; Shape; Surface reconstruction; Surface texture; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Aided Design and Computer Graphics, 2005. Ninth International Conference on
Print_ISBN :
0-7695-2473-7
Type :
conf
DOI :
10.1109/CAD-CG.2005.54
Filename :
1604650
Link To Document :
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