DocumentCode :
383411
Title :
Dense estimation of surface reflectance properties of objects with interreflections
Author :
Machida, Takashi ; Yokoya, Naokazu
Author_Institution :
Cybermedia Center, Osaka Univ., Japan
Volume :
1
fYear :
2002
fDate :
2002
Firstpage :
348
Abstract :
In augmented virtuality which virtualizes real objects to construct a mixed reality environment, it is important to estimate object surface reflectance properties to render objects under arbitrary illumination conditions. The authors developed a method to estimate reflectance properties of object surfaces densely However, it was difficult to estimate surface reflectance properties faithfully for objects with interreflections. This paper describes a new method of densely estimating nonuniform surface reflectance properties of real objects constructed of convex and concave surfaces with interreflections. We use registered range and surface color texture images obtained by a laser rangefinder The proposed method first determines positions of light to take color images for discriminating diffuse and specular reflection components of surface reflection. Then, surface reflectance parameters are estimated based on radiosity. Experiments show the usefulness of the proposed method.
Keywords :
augmented reality; image texture; laser ranging; rendering (computer graphics); augmented virtuality; concave surfaces; convex surfaces; dense estimation; diffuse reflection components; interreflections; laser rangefinder; mixed reality environment; nonuniform surface reflectance properties; object surfaces; range images; rendering; specular reflection components; surface color texture images; surface reflectance properties; Cameras; Color; Information science; Light sources; Optical reflection; Parameter estimation; Position measurement; Reflectivity; Surface texture; Virtual reality;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pattern Recognition, 2002. Proceedings. 16th International Conference on
ISSN :
1051-4651
Print_ISBN :
0-7695-1695-X
Type :
conf
DOI :
10.1109/ICPR.2002.1044720
Filename :
1044720
Link To Document :
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