Název: Duality, Barycentric Coordinates and Intersection Computation in Projective Space with GPU support
Autoři: Skala, Václav
Citace zdrojového dokumentu: WSEAS Transactions on Mathematics. 2010, vol. 9, no. 6, p. 407-416.
Datum vydání: 2010
Nakladatel: WSEAS
Typ dokumentu: preprint
preprint
URI: http://hdl.handle.net/11025/11337
ISSN: 1109-2769
Klíčová slova: počítačová grafika;barycentrické souřadnice;dualita
Klíčová slova v dalším jazyce: computer graphics;barycentric coordinates;duality
Abstrakt: This paper presents solution of selected problems using principle of duality and projective space representation. It will be shown that alternative formulation in the projective space offers quite surprisingly simple solutions that lead to more robust and faster algorithms which are convenient for use within parallel architectures as GPU (Graphical Processor Units-NVIDIA-TESLA/Fermi) or SCC (Intel-Single-chip Cloud Computing), which can speed up solutions of numerical problems in magnitude of 10-100. There are many geometric algorithms based on computation of intersection of lines, planes etc. Sometimes, very complex mathematical notations are used to express simple mathematical solutions, even if their formulation in the projective space offers much more simple solution. It is shown that a solution of a system of linear equations is equivalent to generalized cross product, which leads with the duality principle to new algorithms. This is presented on a new formulation of a line in 3D given as intersection of two planes which is robust and fast, based on duality of Plücker coordinates. The presented approach can be used also for reformulation of barycentric coordinates computations on parallel architectures. The presented approach for intersection computation is well suited especially for applications where robustness is required, e.g. large GIS/CAD/CAM systems etc.
Práva: Original article published under copyright license: © 2010 WSEAS
Vyskytuje se v kolekcích:Preprinty / Preprints (KIV)

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