DocumentCode
3115954
Title
Spatio-temporal photon density estimation using bilateral filtering
Author
Weber, Markus ; Milch, Marco ; Myszkowski, Karol ; Dmitriev, Kirill ; Rokita, Przemyslaw ; Seidel, Hans-Peter
Author_Institution
MPI Informatik, Saarbrucken
fYear
2004
fDate
19-19 June 2004
Firstpage
120
Lastpage
127
Abstract
Photon tracing and density estimation are well established techniques in global illumination computation and rendering of high-quality animation sequences. Using traditional density estimation techniques it is difficult to remove stochastic noise inherent for photon-based methods while avoiding overblurring lighting details. In this paper we investigate the use of bilateral filtering for lighting reconstruction based on the local density of photon hit points. Bilateral filtering is applied in spatio-temporal domain and provides control over the level-of-details in reconstructed lighting. All changes of lighting below this level are treated as stochastic noise and are suppressed. Bilateral filtering proves to be efficient in preserving sharp features in lighting which is in particular important for high-quality caustic reconstruction. Also, flickering between subsequent animation frames is substantially reduced due to extending bilateral filtering into temporal domain
Keywords
computer animation; filtering theory; image denoising; image reconstruction; image sequences; lighting; noise; photons; ray tracing; rendering (computer graphics); spatiotemporal phenomena; stochastic processes; bilateral filtering; global illumination computation; high-quality animation sequence rendering; high-quality caustic reconstruction; lighting reconstruction; photon tracing; spatio-temporal photon density estimation; stochastic noise; 1f noise; Animation; Filtering; Layout; Lighting control; Noise level; Noise reduction; Optical computing; Stochastic resonance; Surface reconstruction;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Graphics International, 2004. Proceedings
Conference_Location
Crete
ISSN
1530-1052
Print_ISBN
0-7695-2171-1
Type
conf
DOI
10.1109/CGI.2004.1309200
Filename
1309200
Link To Document