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  Object shape and reflectance modeling from observation (1997) [134 citations — 13 self]

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by Yoichi Sato, Mark D. Wheeler, Katsushi Ikeuchi
http://www.ri.cmu.edu/pub_files/pub1/sato_yoichi_1997_2/sato_yoichi_1997_2.ps.gz
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Abstract:

Apple Computer Inc. An object model for computer graphics applications should contain two aspects of information: shape and reflectance properties of the object. A number of techniques have been developed for modeling object shapes by observing real objects. In contrast, attempts to model reflectance properties of real objects have been rather limited. In most cases, modeled reflectance properties are too simple or too complicated to be used for synthesizing realistic images of the object. In this paper, we propose a new method for modeling object reflectance properties, as well as object shapes, by observing real objects. First, an object surface shape is reconstructed by merging multiple range images of the object. By using the reconstructed object shape and a sequence of color images of the object, parameters of a reflection model are estimated in a robust manner. The key point of the proposed method is that, first, the diffuse and specular reflection components are separated from the color image sequence, and then, reflectance parameters of each reflection component are estimated separately. This approach enables estimation of reflectance properties of real objects whose surfaces show specularity as well as diffusely reflected lights. The recovered object shape and reflectance properties are then used for synthesizing object images with realistic shading effects under arbitrary illumination conditions.

Citations

1350 Marching Cubes: A high resolution 3D surface construction algorithm – Lorensen, Cline - 1987
503 A volumetric method for building complex models from range images – Curless, Levoy - 1996
447 Surface reconstruction from unorganized points – Hoppe, DeRose, et al. - 1992
295 Mesh optimization – HOPPE, DEROSE, et al. - 1993
218 Theory for off-specular reflection from roughened surfaces – Torrance, Sparrow - 1967
215 Measuring and modeling anisotropic reflection – Ward - 1992
109 Using color to separate reflection components – Shafer - 1985
88 Surface Reflection: Physical and Geometric Perspectives”, Carnegie Mellon University technical report – Nayar, Ikeuchi, et al. - 1989
79 Reliable surface reconstruction from multiple range images – Hilton, Stoddart, et al. - 1996
54 Consensus Surfaces for Modeling 3D Objects from Multiple Range Images – Wheeler, Sato, et al. - 1998
47 Constraining Object Features Using a Polarization Reflectance Model – Wolff, Boult - 1991
42 Oct-trees and their use in representing three-dimensional objects – Jackins, Tanimoto - 1980
38 Color reflectance modeling using a polychromatic laser range sensor – Baribeau, Rioux, et al. - 1991
33 Determining Reflectance Properties of an Object Using Range and Brightness Images – Ikeuchi, Sato - 1991
30 Temporal-color Space Analysis of Reflection – Sato, Ikeuchi - 1994
22 Inverting an illumination model from range and intensity maps – Kay, Caelli - 1994
17 Reflectance function estimation and shape recovery from image sequence of a rotating object – Lu, Little - 1995
9 Range imaging system utilizing nematic liquid crystal mask – Sato, Yamamoto, et al. - 1987
9 Reflectance analysis for 3d computer graphics model generation – Sato, Ikeuchi - 1996
3 Efficient eigenvalues for visualization – Cromwell - 1994
1 Boult, "Removal of specularities using color and polarization – Nayar, Fang, et al. - 1993
1 at Micro Soft Co., personal communication – Szelski