УДК: 621.396.963:629.7
Estimating the contrast in metric color space with luminance, saturation, and hue coordinates
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Publication in Journal of Optical Technology
Казиев И.А., Румянцев П.А., Саута О.И., Шмулевич В.Л. Оценка контраста в метрическом цветовом пространстве с координатами: светлота, насыщенность, цветовой тон // Оптический журнал. 2015. Т. 82. № 9. С. 69–74.
Kaziev I.A., Rumyantsev P.A., Sauta O.I., Shmulevich V.L. Estimating the contrast in metric color space with luminance, saturation, and hue coordinates [in Russian] // Opticheskii Zhurnal. 2015. V. 82. № 9. P. 69–74.
I. A. Kaziev, P. A. Rumyantsev, O. I. Sauta, and V. L. Shmulevich, "Estimating the contrast in metric color space with luminance, saturation, and hue coordinates," Journal of Optical Technology. 82(9), 629-633 (2015). https://doi.org/10.1364/JOT.82.000629
This paper discusses the possibility of using a metric color space based on the three-component multistage theory of opponent colors when developing on-board aviation displays. The use of metric color space makes it possible to calculate color contrasts that are used as the main color characteristics and image-perception indices when constructing display systems of ergatic aircraft complexes in order to increase pilot safety.
metric color space, theory of opponent colors, color contrast, luminance, hue coordinates, saturation
OCIS codes: 120.5060, 330.1730
References:1. M. M. Gurevich, Color and Its Measurement (Akademiya Nauk SSSR, Moscow, 1950).
2. L. L. Polosin, “Restrictions in the use of photometric quantities and methods of colorimetry,” in Questions of Electronics,Ser. Tekhnika Televideniya, 2013, No. 1, pp. 3–16.
3. E. N. Yustova, Color Measurements (Colorimetry) (SPbGU, St. Petersburg, 2000).
4. L. L. Polosin, “Methodology of estimating the quality of the reproduction of color images by optoelectronic systems,” Author’s abstract of doctoral dissertation, SPbGU ITMO, St. Petersburg (1997).
5. E. N. Sokolov and Ch. A. Izmaı˘lov, Color Vision (MGU, Moscow, 1984).
6. L. Hurvich and D. Jameson, “An opponent-process theory of color vision,” Psychol. Rev. 64, 384 (1957).
7. D. B. Judd and G. Wyszecki, Color in Business, Science, and Industry (Wiley, New York, 1975; Mir, Moscow, 1978).
8. GOST [State Standard] R 52234-2005 (ISO 13406-2:2001) “Ergonomic requirements on working with visual flat-panel displays, Part 2.
9. V. V. Meshkov and M. M. Epaneshnikov, Illuminating Apparatus (Énergiya, Moscow, 1972).
10. A. S. Shaı˘kevich, “Nomogram for determining the speed and probability of differentiation,” Svetotekhnika No. 1, 17 (1964).
11. N. P. Travnikova, Efficiency of Visual Search (Mashinostroenie, Moscow, 1985).