Talks and Poster Presentations (with Proceedings-Entry):
R. Preiner, T. Boubekeur, M. Wimmer:
"Gaussian-Product Subdivision Surfaces";
Talk: Acm Siggraph 2019,
Los Angeles, California, USA;
- 2019-08-01; in: "ACM Transactions on Graphics",
ACM Transactions on Graphics,
Volume 38, Issue 4
Probabilistic distribution models like Gaussian mixtures have shown great potential for improving both the quality and speed of several geometric operators. This is largely due to their ability to model large fuzzy data using only a reduced set of atomic distributions, allowing for large compression rates at minimal information loss. We introduce a new surface model that utilizes these qualities of Gaussian mixtures for the definition and control of a parametric smooth surface. Our approach is based on an enriched mesh data structure, which describes the probability distribution of spatial surface locations around each vertex via a Gaussian covariance matrix. By incorporating this additional covariance information, we show how to define a smooth surface via a nonlinear probabilistic subdivision operator based on products of Gaussians, which is able to capture rich details at fixed control mesh resolution. This entails new applications in surface reconstruction, modeling, and geometric compression.
Gaussian mixtures, surface reconstruction, subdivision surfaces
"Official" electronic version of the publication (accessed through its Digital Object Identifier - DOI)
Electronic version of the publication:
Created from the Publication Database of the Vienna University of Technology.