Title
Scalable Virtual Ray Lights Rendering for Participating Media.
Abstract
Virtual ray lights (VRL) are a powerful representation for multiple-scattered light transport in volumetric participating media. While efficient Monte Carlo estimators can importance sample the contribution of a VRL along an entire sensor subpath, render time still scales linearly in the number of VRLs. We present a new scalable hierarchial VRL method that preferentially samples VRLs according to their image contribution. Similar to Lightcuts-based approaches, we derive a tight upper bound on the potential contribution of a VRL that is efficient to compute. Our bound takes into account the sampling probability densities used when estimating VRL contribution. Ours is the first such upper bound formulation, leading to an efficient and scalable rendering technique with only a few intuitive user parameters. We benchmark our approach in scenes with many VRLs, demonstrating improved scalability compared to existing state-of-the-art techniques.
Year
DOI
Venue
2019
10.1111/cgf.13770
COMPUTER GRAPHICS FORUM
Field
DocType
Volume
Computer vision,Computer graphics (images),Computer science,Artificial intelligence,Rendering (computer graphics),Scalability
Journal
38.0
Issue
ISSN
Citations 
4.0
0167-7055
0
PageRank 
References 
Authors
0.34
0
7
Name
Order
Citations
PageRank
Nicolas Vibert110.69
Adrien Gruson2186.78
H. Stokholm300.34
T. Mortensen400.34
Wojciech Jarosz5104160.39
Toshiya Hachisuka647030.93
Derek Nowrouzezahrai780154.49