Efficiently reconstruct light field probes from light-G-buffers

•A novel data structure that enables real-time global illumination with dynamic light sources.•Decouple geometric and radiance information of light field probe.•Fast (ir)radiance field reconstruction for indirect diffuse and glossy lighting.•Achieve global illumination effect comparable with light f...

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Veröffentlicht in:Computers & graphics 2021-02, Vol.94, p.144-151
Hauptverfasser: Chen, Xuechao, Nie, Yu, Chen, Jianwei, Liu, Yanli, Zhang, Yanci
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Sprache:eng
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Zusammenfassung:•A novel data structure that enables real-time global illumination with dynamic light sources.•Decouple geometric and radiance information of light field probe.•Fast (ir)radiance field reconstruction for indirect diffuse and glossy lighting.•Achieve global illumination effect comparable with light field probe method. [Display omitted] In this paper, we extend the light field probe method to handle dynamic light sources. The key idea is to generate distance and material information at the light source position on-the-fly and store them in a data structure called light-G-buffer. Based on this data structure and the precomputed geometric information, an efficient method is proposed to reconstruct the (ir)radiance fields for all light field probes, from which indirect diffuse and glossy illumination effects can be achieved for dynamic light sources. Furthermore, we show the ability of our method to handle multi-bounce lighting and accommodate multi-light environments at the cost of shading accuracy. Experiments show that our approach achieves comparable effects to the precomputed light field probe method at a real-time frame rate and can further handle multiple dynamic light sources.
ISSN:0097-8493
1873-7684
DOI:10.1016/j.cag.2020.12.003