DocumentCode :
2894157
Title :
3D geometric metamorphosis based on harmonic map
Author :
Kanai, Takashi ; Suzuki, Hiromasa ; KIMURA, Fumihiko
Author_Institution :
Dept. of Precision Machinery Eng., Tokyo Univ., Japan
fYear :
1997
fDate :
13-16 Oct 1997
Firstpage :
97
Lastpage :
104
Abstract :
Recently, animations with deforming objects are frequently used in various computer graphics applications. Metamorphosis (or morphing) of three dimensional objects can realize a shape transformation between two or more existing objects. We present a new algorithm for 3D geometric metamorphosis between two objects based on the harmonic map. Our algorithm is applicable for arbitrary polyhedra that are homeomorphic to the three dimensional sphere or the two dimensional disk. In our algorithm, each of the two 3D objects is first embedded to the circular disk on the plane. This embedded model has the same graph structure as its 3D objects. By overlapping those two embedded models, we can establish a correspondence between the two objects. Using this correspondence, intermediate objects between two objects are easily generated. The user only specifies a boundary loop on an object and a vertex on that boundary which control the interpolation
Keywords :
computational geometry; computer animation; graphical user interfaces; interpolation; solid modelling; 3D geometric metamorphosis; animations; arbitrary polyhedra; boundary loop; computer graphics; deforming objects; graph structure; graphical user interface; harmonic map; image morphing; interpolation; object correspondence; shape transformation; three dimensional objects; three dimensional sphere; two dimensional disk; Animation; Application software; Computer graphics; Data mining; Interpolation; Isosurfaces; Machinery; Rendering (computer graphics); Shape control; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Graphics and Applications, 1997. Proceedings., The Fifth Pacific Conference on
Conference_Location :
Seoul
Print_ISBN :
0-8186-8028-8
Type :
conf
DOI :
10.1109/PCCGA.1997.626179
Filename :
626179
Link To Document :
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