Linear bases for representation of natural and artificial illuminants
- 1 May 1997
- journal article
- Published by Optica Publishing Group in Journal of the Optical Society of America A
- Vol. 14 (5) , 1007-1014
- https://doi.org/10.1364/josaa.14.001007
Abstract
By the principal-value decomposition process, we have obtained two linear bases for representing the spectral power distributions of illuminants, applicable for algorithms of color synthesis and analysis in artificial vision: one from experimental measurements of daylight and another combining both natural and artificial illuminants. The first basis adequately represents daylight with dimension 3, in accordance with the previous results of Judd et al. [J. Opt. Soc. Am. 54, 1031 (1964)]; however, it does not adequately represent artificial illuminants, even with a higher dimension. In the case of the second basis, many good results are obtained in the reconstruction of the spectral power distribution both of daylight and of artificial illuminants, including some fluorescent lights, with dimension 7 or even less. In consequence, we show the possibility of obtaining linear bases of a low dimension, even when the set of illuminants that we try to represent presents a certain variability in shape.Keywords
This publication has 7 references indexed in Scilit:
- Characteristic spectra of Munsell colorsJournal of the Optical Society of America A, 1989
- The Synthesis and Analysis of Color ImagesPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1987
- Color constancy: a method for recovering surface spectral reflectanceJournal of the Optical Society of America A, 1986
- Spectral distribution of Australian daylightJournal of the Optical Society of America, 1978
- Spectral distribution and colour of north sky at BombayJournal of Physics D: Applied Physics, 1971
- Typical Spectral Distributions and Color for Tropical DaylightJournal of the Optical Society of America, 1968
- Spectral Distribution of Typical Daylight as a Function of Correlated Color TemperatureJournal of the Optical Society of America, 1964