Article

Statistical Approach to Color Quality of Solid-State Lamps

Inst. of Mater. Sci. & Appl. Res., Vilnius Univ., Vilnius, Lithuania
IEEE Journal of Selected Topics in Quantum Electronics (impact factor: 3.78). 09/2009; DOI:10.1109/JSTQE.2009.2019113 pp.1189 - 1198
Source: IEEE Xplore

ABSTRACT Color rendition vectors of 1269 spectrophotometrically characterized test samples of the Munsell palette were analyzed for common solid-state and fluorescent lamps with respect to reference illuminants. The vectors were individually normalized to the size of color discrimination shapes obtained from the known data of just perceived differences of chromaticity and luminance. Based on the analysis performed, we categorized the rendered colors into three groups-colors rendered with high fidelity, colors rendered with increased saturation, and those rendered with distorted hue-and introduced three corresponding indexes to assess the color quality of light sources. In combination with the correlated color temperature, these indexes, which represent important color quality characteristics of white light, constitute a simple 4-D metric for an advanced rating of illumination-grade lamps.

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Keywords

1269 spectrophotometrically
 
chromaticity
 
color discrimination shapes
 
color quality
 
color quality characteristics
 
Color rendition vectors
 
colors
 
common solid-state
 
correlated color temperature
 
distorted hue-and
 
fidelity
 
groups-colors
 
known data
 
reference illuminants
 
rendered colors
 
simple 4-D metric
 
test samples
 
white light