A framework for the experimental comparison of solar and skydome illumination

Author:

Kider Joseph T.1,Knowlton Daniel1,Newlin Jeremy1,Li Yining Karl1,Greenberg Donald P.1

Affiliation:

1. Cornell University

Abstract

The illumination and appearance of the solar/skydome is critical for many applications in computer graphics, computer vision, and daylighting studies. Unfortunately, physically accurate measurements of this rapidly changing illumination source are difficult to achieve, but necessary for the development of accurate physically-based sky illumination models and comparison studies of existing simulation models. To obtain baseline data of this time-dependent anisotropic light source, we design a novel acquisition setup to simultaneously measure the comprehensive illumination properties. Our hardware design simultaneously acquires its spectral, spatial, and temporal information of the skydome. To achieve this goal, we use a custom built spectral radiance measurement scanner to measure the directional spectral radiance, a pyranometer to measure the irradiance of the entire hemisphere, and a camera to capture high-dynamic range imagery of the sky. The combination of these computer-controlled measurement devices provides a fast way to acquire accurate physical measurements of the solar/skydome. We use the results of our measurements to evaluate many of the strengths and weaknesses of several sun-sky simulation models. We also provide a measurement dataset of sky illumination data for various clear sky conditions and an interactive visualization tool for model comparison analysis available at http://www.graphics.cornell.edu/resources/clearsky/.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference42 articles.

1. Abbot C. Aldrich L. and Fund S. I. H. 1916. The pyranometer--an instrument for measuring sky radiation. No. v. 66 nos. 1--18 in Smithsonian miscellaneous collections. Smithsonian institution. Abbot C. Aldrich L. and Fund S. I. H. 1916. The pyranometer--an instrument for measuring sky radiation . No. v. 66 nos. 1--18 in Smithsonian miscellaneous collections. Smithsonian institution.

2. Band model method for modeling atmospheric propagation at arbitrarily fine spectral resolution, May 22;Acharya P.;US Patent App.,2003

3. Precomputed Atmospheric Scattering

4. CIE. 1994. Guide to Recommended Practice of Daylight Measurement. CIE technical report. CIE. CIE. 1994. Guide to Recommended Practice of Daylight Measurement . CIE technical report. CIE.

5. Darula S. Kittler R. and Road D. 2002. Cie general sky standard defining luminance distributions. Moon 11--13. Darula S. Kittler R. and Road D. 2002. Cie general sky standard defining luminance distributions. Moon 11--13.

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