A Fully-correlated Anisotropic Micrograin BSDF Model
Simon Lucas, Mickaël Ribardière, Romain Pacanowski, Pascal Barla
Abstract
We introduce an improved version of the micrograin BSDF model [Lucas et al. 2023] for the rendering of anisotropic porous layers. Our approach leverages the properties of micrograins to take into account the correlation between their height and normal, as well as the correlation between the light and view directions. This allows us to derive an exact analytical expression for the Geometrical Attenuation Factor (GAF), summarizing shadowing and masking inside the porous layer. This fully-correlated GAF is then used to define appropriate mixing weights to blend the BSDFs of the porous and base layers. Furthermore, by generalizing the micrograins shape to anisotropy, combined with their fully-correlated GAF, our improved BSDF model produces effects specific to porous layers such as retro-reflection visible on dust layers at grazing angles or height and color correlation that can be found on rusty materials. Finally, we demonstrate very close matches between our BSDF model and light transport simulations realized with explicit instances of micrograins, thus validating our model.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 01cb98b4-617c-4481-824a-0d14dedf553eCited by top-tier papers2
- Toward Richer Material Generation via Procedural Data EnhancementYunchen Yu, Jacob Munkberg, Jon Hasselgren, Chris Cummings et al.SIGGRAPH 2026
- PureSample: Neural Materials Learned by Sampling MicrogeometryZixuan Li, Zixiong Wang, Jian Yang, Milos Hasan et al.SIGGRAPH 2026
Builds on2
Related papers
- Position-free multiple-bounce computations for smith microfacet BSDFsBeibei Wang, Wenhua Jin, Jiahui Fan, Jian Yang et al.SIGGRAPH 2022 · 10 citations
- An inverse method for the exploration of layered material appearanceMégane Bati, Pascal Barla, Romain PacanowskiSIGGRAPH 2021 · 5 citations
- A Realistic Surface-based Cloth Rendering ModelJunqiu Zhu, Adrián Jarabo, Carlos Aliaga, Ling-Qi Yan et al.SIGGRAPH 2023 · 18 citations
- A Fully-statistical Wave Scattering Model for Heterogeneous SurfacesZhengze Liu, Yuchi Huo, Yifan Peng, Rui WangSIGGRAPH 2025 · 1 citation
- Transfer matrix based layered materials renderingJoël Randrianandrasana, Patrick Callet, Laurent LucasSIGGRAPH 2021 · 11 citations
