DocumentCode
2152059
Title
Local and global geometric methods for analysis, interrogation, reconstruction, modification and design of shape
Author
Wolter, F.E. ; Friese, K.-I.
Author_Institution
Div. of Comput. Graphics & Geometric Modeling, Hannover Univ., Germany
fYear
2000
fDate
2000
Firstpage
137
Lastpage
151
Abstract
Gives an overview of some recent methods useful for local and global shape analysis and for the design of solids. These methods include, as new tools for global and local shape analysis, the spectra of the Laplace and Laplace-Beltrami operators and the concept of stable umbilical points, i.e. stable singularities of the “principal curvature line” wire-frame model of the solid´s boundary surface. Most of the material in this paper deals with the medial axis transform as a tool for shape interrogation, reconstruction, modification and design. We show that it appears to be possible to construct an intuitive user interface that allows one to mould shapes by employing the medial axis transform. We also explain that the medial axis and Voronoi diagram can also be defined and computed on free surfaces in a setting where the geodesic distance between two points p and q on a surface S is defined by the shortest surface path on S joining the two points p, q. This leads to the natural and computable generalized concepts of the geodesic medial axis and geodesic Voronoi diagram on free-form surfaces. Both can be computed with a reasonable speed and with high accuracy (of about 12 digits when double floating-point arithmetic is used for the computations)
Keywords
Laplace transforms; computational geometry; floating point arithmetic; graphical user interfaces; mathematical morphology; mathematical operators; solid modelling; Laplace operator; Laplace-Beltrami operator; computable generalized concepts; computation speed; computational accuracy; double floating-point arithmetic; free-form surfaces; geodesic Voronoi diagram; geodesic distance; geodesic medial axis; global geometric methods; global shape analysis; intuitive user interface; local geometric methods; local shape analysis; medial axis transform; principal curvature line; shape design; shape interrogation; shape modification; shape moulding; shape reconstruction; shortest surface path; solid boundary surface; spectra; stable singularities; stable umbilical points; wire-frame model; Computer graphics; Computer science; Electrical capacitance tomography; Geophysics computing; Laboratories; Shape; Solid modeling; Spline; Surface reconstruction; Surface topography;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Graphics International, 2000. Proceedings
Conference_Location
Geneva
Print_ISBN
0-7695-0643-7
Type
conf
DOI
10.1109/CGI.2000.852329
Filename
852329
Link To Document