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Spherical Piecewise Constant Basis Functions for All-Frequency Precomputed Radiance Transfer

Published: 01 March 2008 Publication History
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  • Abstract

    This paper presents a novel basis function, called spherical piecewise constant basis function (SPCBF), for precomputed radiance transfer. SPCBFs have several desirable properties: rotatability, ability to represent all-frequency signals, and support for efficient multiple product. By smartly partitioning the illumination sphere into a set of subregions, and associating each subregion with an SPCBF valued 1 inside the region and 0 elsewhere, we precompute the light coefficients using the resulting SPCBFs. Efficient rotation of the light representation in SPCBFs is achieved by rotating the domain of SPCBFs. We run-time approximate the BRDF and visibility coefficients using the set of SPCBFs for light, possibly rotated, through fast lookup of summed-area-table (SAT) and visibility distance table (VDT), respectively. SPCBFs enable new effects such as object rotation in all-frequency rendering of dynamic scenes and on-the-fly BRDF editing under rotating environment lighting. With graphics hardware acceleration, our method achieves real-time frame rates.

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    • (2021)Binary space partitioning visibility tree for polygonal and environment light renderingThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-021-02181-837:9-11(2499-2511)Online publication date: 1-Sep-2021
    • (2019)Binary Space Partitioning Visibility Tree for Polygonal Light RenderingSIGGRAPH Asia 2019 Technical Briefs10.1145/3355088.3365153(79-82)Online publication date: 17-Nov-2019
    • (2015)Efficient and Accurate Spherical Kernel Integrals Using Isotropic DecompositionACM Transactions on Graphics10.1145/279713634:5(1-14)Online publication date: 3-Nov-2015
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    Published In

    cover image IEEE Transactions on Visualization and Computer Graphics
    IEEE Transactions on Visualization and Computer Graphics  Volume 14, Issue 2
    March 2008
    236 pages

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    IEEE Educational Activities Department

    United States

    Publication History

    Published: 01 March 2008

    Author Tags

    1. Color
    2. Computer Graphics
    3. Precomputed Radiance Transfer
    4. Real-time Rendering
    5. Shading
    6. Spherical Piecewise Constant Basis Functions
    7. and texture
    8. shadowing

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    • (2021)Binary space partitioning visibility tree for polygonal and environment light renderingThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-021-02181-837:9-11(2499-2511)Online publication date: 1-Sep-2021
    • (2019)Binary Space Partitioning Visibility Tree for Polygonal Light RenderingSIGGRAPH Asia 2019 Technical Briefs10.1145/3355088.3365153(79-82)Online publication date: 17-Nov-2019
    • (2015)Efficient and Accurate Spherical Kernel Integrals Using Isotropic DecompositionACM Transactions on Graphics10.1145/279713634:5(1-14)Online publication date: 3-Nov-2015
    • (2015)Photorealistic rendering of mixed reality scenesComputer Graphics Forum10.1111/cgf.1259134:2(643-665)Online publication date: 1-May-2015
    • (2015)All-Frequency Direct Illumination with Vectorized VisibilityIEEE Transactions on Visualization and Computer Graphics10.1109/TVCG.2015.240739821:8(945-958)Online publication date: 29-Jun-2015
    • (2015)Irradiance regression for efficient final gathering in global illuminationFrontiers of Computer Science: Selected Publications from Chinese Universities10.1007/s11704-014-4211-69:3(456-465)Online publication date: 1-Jun-2015
    • (2014)A practical algorithm for rendering interreflections with all-frequency BRDFsACM Transactions on Graphics10.1145/253368733:1(1-16)Online publication date: 7-Feb-2014
    • (2014)Interactive cloth rendering of microcylinder appearance model under environment lightingComputer Graphics Forum10.1111/cgf.1230233:2(333-340)Online publication date: 1-May-2014
    • (2013)Anisotropic spherical GaussiansACM Transactions on Graphics10.1145/2508363.250838632:6(1-11)Online publication date: 1-Nov-2013
    • (2012)K-clustered tensor approximationACM Transactions on Graphics10.1145/2167076.216707731:3(1-17)Online publication date: 5-Jun-2012
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