An Energy-Conserving Hair Reflectance Model

We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate arbitrarily many orders of internal reflection. Accounting for compression and contraction of specular cones produces a new longitudinal scattering f...

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Veröffentlicht in:Computer graphics forum Jg. 30; H. 4; S. 1181 - 1187
Hauptverfasser: d'Eon, Eugene, Francois, Guillaume, Hill, Martin, Letteri, Joe, Aubry, Jean-Marie
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Oxford, UK Blackwell Publishing Ltd 01.06.2011
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ISSN:0167-7055, 1467-8659
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Abstract We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate arbitrarily many orders of internal reflection. Accounting for compression and contraction of specular cones produces a new longitudinal scattering function which is non‐Gaussian and includes an off‐specular peak. Accounting for roughness in the azimuthal direction leads to an integral across the hair fiber which is efficiently evaluated using a Gaussian quadrature. Solving cubic equations is avoided, caustics are included in the model in a consistent fashion, and more accurate colors are predicted by considering many internal pathways.
AbstractList We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate arbitrarily many orders of internal reflection. Accounting for compression and contraction of specular cones produces a new longitudinal scattering function which is non‐Gaussian and includes an off‐specular peak. Accounting for roughness in the azimuthal direction leads to an integral across the hair fiber which is efficiently evaluated using a Gaussian quadrature. Solving cubic equations is avoided, caustics are included in the model in a consistent fashion, and more accurate colors are predicted by considering many internal pathways.
Abstract We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate arbitrarily many orders of internal reflection. Accounting for compression and contraction of specular cones produces a new longitudinal scattering function which is non-Gaussian and includes an off-specular peak. Accounting for roughness in the azimuthal direction leads to an integral across the hair fiber which is efficiently evaluated using a Gaussian quadrature. Solving cubic equations is avoided, caustics are included in the model in a consistent fashion, and more accurate colors are predicted by considering many internal pathways. [PUBLICATION ABSTRACT]
Author Hill, Martin
Francois, Guillaume
d'Eon, Eugene
Aubry, Jean-Marie
Letteri, Joe
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Cites_doi 10.1145/1179849.1180033
10.1145/882262.882345
10.1145/1360612.1360631
10.1145/1778765.1778793
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10.1145/1141911.1141995
10.1145/1618452.1618511
10.1109/TVCG.2007.43
10.1109/TVCG.2007.30
10.1145/344779.344958
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Snippet We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate...
Abstract We present a reflectance model for dielectric cylinders with rough surfaces such as human hair fibers. Our model is energy conserving and can evaluate...
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SubjectTerms Accounting
Caustics
Dielectrics
Fibers
Hair
I.3.7 [Computer Graphics]: Three-Dimensional Graphics and Realism-Shading
Mathematical models
Reflectance
Reflectivity
Roughness
Studies
Title An Energy-Conserving Hair Reflectance Model
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