DocumentCode
1684790
Title
Towards a Definition of Virtual Objects Using Partial Differential Equations
Author
Ugail, Hassan ; Castro, Gabriela González ; Sourin, Alexei ; Sourina, Olga
Author_Institution
Univ. of Bradford, Bradford, UK
fYear
2009
Firstpage
138
Lastpage
145
Abstract
We propose an efficient alternative to commonly used parametric surfaces such as NURBS surfaces for definition of complex geometry in shared virtual spaces. Our mathematical model allows to define objects by only providing coordinates of the section curves in 3-space. The resulting parametric functions allow fast calculation of the coordinates of the points on the surface of the objects. We devise an algorithm which evaluates the coefficients of these functions in real time. Given the small size of the resulting formulas and interactive rates for their calculation, we are able to efficiently use such PDE-based models for making virtual objects in shared virtual spaces. We describe the modeling framework and illustrate the proposed theoretical concepts with our function-based extension of VRML and X3D.
Keywords
computational geometry; curve fitting; partial differential equations; solid modelling; splines (mathematics); surface fitting; virtual reality languages; 3D-space curve; NURBS surface; PDE-based model; complex geometry definition; function-based VRML extension; function-based X3D extension; interactive rate; mathematical model; nonuniform rational B-spline; parametric function; parametric surface; partial differential equation; shape modeling framework; shared virtual space; virtual object definition; Collaboration; Geometry; Internet; Mathematical model; Partial differential equations; Shape; Space technology; Spline; Surface reconstruction; Surface topography; PDE; VRML; X3D; shape modeling; shared virtual spaces;
fLanguage
English
Publisher
ieee
Conference_Titel
CyberWorlds, 2009. CW '09. International Conference on
Conference_Location
Bradford
Print_ISBN
978-1-4244-4864-7
Electronic_ISBN
978-0-7695-3791-7
Type
conf
DOI
10.1109/CW.2009.8
Filename
5279660
Link To Document