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A comparison of Gaussian and mean curvatures estimation methods on triangular meshes

Tatiana Surazhsky, Evgeni Magid, Octavian Soldea, Gershon Elber, Ehud Rivlin

Year
2004
Citations
144

Abstract

Estimating intrinsic geometric properties of a surface from a polygonal mesh obtained from range data is an important stage of numerous algorithms in computer and robot vision, computer graphics, geometric modeling, industrial and biomedical engineering. This work considers different computational schemes for local estimation of intrinsic curvature geometric properties. Five different algorithms and their modifications were tested on triangular meshes that represent tessellations of synthetic geometric models. The results were compared with the analytically computed values of the Gaussian and mean curvatures of the non-uniform rational B-spline (NURBs) surfaces, these meshes originated from. This work manifests the best algorithms suited for that indeed different algorithms should be employed to compute the Gaussian and mean curvatures.

Keywords

Polygon meshGaussian curvatureGaussianComputational geometryMean curvatureGeometric modelingComputer scienceTriangle meshCurvatureSpline (mechanical)

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