Exploring conditions under which von Kries ratios are illuminant-invariant, C. van Trigt produces an error expression, whose first term he claims must be small, as when the visual sensitivities approximate delta functions in wavelength. However, by restricting illuminant and reflectance spectra in s
Geometric relations between scales of small colour differences
β Scribed by Klaus Witt
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 202 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0361-2317
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β¦ Synopsis
Varying magnitude of colour differences from threshold up to moderate size in painted sample pairs at five CIE colour centers was estimated by grey scale assessment. Painted samples were produced for constant step width along the main axes of previously determined threshold (x,y,Y)-ellipsoids with lightness variation at constant (x,y)chromaticity starting with threshold length and enlarging it five times for moderate magnitude of colour difference. Pairs were formed for linear extensions along axes and for diagonal combinations at equal step width between axes. The model under test assumes additive linear scale extension in constant proportions of the threshold (x,y,Y)-ellipsoid for increasing magnitude of perceived colour difference and correlates perceptual main colour characters with main ellipsoid axes. Both assumptions were falsified to some degree: in general, magnitude of colour difference varies differently, though close to linear, and slightly subadditive for the three axes and for the different colour centers; the short (x,y)-ellipse axis in some cases is not correlated with a perceptual hue vector component, and the main lightness direction sometimes is tilted in relation to the (x,y)-plane. Three colour-difference formulae do not provide better global predictions than the local (x,y,Y)-ellipsoid formulae. The results may be used for more detailed modeling of colour-difference formulae and for tolerance settings at different ranges of colour difference.
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