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2008 International Conference on Cyberworlds
Partial Differential Equations for Function Based Geometry Modelling within Visual Cyberworlds
September 22-September 24
ISBN: 978-0-7695-3381-0
| ASCII Text | x | ||
| Hassan Ugail, Alexei Sourin, "Partial Differential Equations for Function Based Geometry Modelling within Visual Cyberworlds," 2012 International Conference on Cyberworlds, pp. 224-231, 2008 International Conference on Cyberworlds, 2008. | |||
| BibTex | x | ||
| @article{ 10.1109/CW.2008.42, author = {Hassan Ugail and Alexei Sourin}, title = {Partial Differential Equations for Function Based Geometry Modelling within Visual Cyberworlds}, journal ={2012 International Conference on Cyberworlds}, volume = {0}, year = {2008}, isbn = {978-0-7695-3381-0}, pages = {224-231}, doi = {http://doi.ieeecomputersociety.org/10.1109/CW.2008.42}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - 2012 International Conference on Cyberworlds TI - Partial Differential Equations for Function Based Geometry Modelling within Visual Cyberworlds SN - 978-0-7695-3381-0 SP224 EP231 A1 - Hassan Ugail, A1 - Alexei Sourin, PY - 2008 KW - Function based Geometry KW - PDE surfaces KW - Visual Cyberworlds VL - 0 JA - 2012 International Conference on Cyberworlds ER - | |||
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/CW.2008.42
We propose the use of Partial Differential Equations (PDEs) for shape modelling within visual cyberworlds. PDEs, especially those that are elliptic in nature, enable surface modelling to be defined as boundary-value problems. Here we show how the PDE based on the Biharmonic equation subject to suitable boundary conditions can be used for shape modelling within visual cyberworlds. We discuss an analytic solution formulation for the Biharmonic equation which allows us to define a function based geometry whereby the resulting geometry can be visualised efficiently at arbitrary levels of shape resolutions. In particular, we discuss how function based PDE surfaces can be readily integrated within VRML and X3D environments.
Index Terms:
Function based Geometry, PDE surfaces, Visual Cyberworlds
Citation:
Hassan Ugail, Alexei Sourin, "Partial Differential Equations for Function Based Geometry Modelling within Visual Cyberworlds," cw, pp.224-231, 2008 International Conference on Cyberworlds, 2008
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