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Color-dulling solid-state sources of light |
Optics Express, Vol. 20, Issue 9, pp. 9755-9762 (2012)
http://dx.doi.org/10.1364/OE.20.009755
Acrobat PDF (880 KB)
Abstract
The spectral power distributions (SPDs) of solid-state sources were optimized for rendering the highest number of colors with a perceptually noticeable reduction in chroma (dulling) while maintaining the hue distortion below an acceptable threshold. Statistical color rendition indices derived from the analysis of color-shift vectors of 1269 Munsell samples were used in the objective functions for the optimization of SPDs of the color-dulling sources. The starting optimization point was the SPD composed of narrow yellow and blue (YB) emissions, which both dulls colors and distorts hues. Two methods were applied to reduce the hue-distorting effect of the narrow-band YB source. The first method, broadening the spectral bands, yields SPDs similar to that of a dichromatic white light-emitting diode (LED) with the partial conversion of narrow-band blue electroluminescence to wide-band yellow photoluminescence. The second method, multiplying the spectral bands, results in the SPDs similar to those of trichromatic clusters of red, yellow, and blue (RYB) and amber, green, and blue (AGB) LEDs.
© 2012 OSA
1. Introduction
E. F. Schubert and J. K. Kim, “Solid-state light sources getting smart,” Science 308(5726), 1274–1278 (2005). [CrossRef] [PubMed]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, R. Gaska, and M. S. Shur, “Optimization of white polychromatic semiconductor lamps,” Appl. Phys. Lett. 80(2), 234–236 (2002). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, and M. S. Shur, “Spectral optimization of phosphor-conversion light-emitting diodes for ultimate color rendering,” Appl. Phys. Lett. 93(5), 051115 (2008). [CrossRef]
A. Žukauskas, R. Vaicekauskas, and M. Shur, “Solid-state lamps with optimized color saturation ability,” Opt. Express 18(3), 2287–2295 (2010). [CrossRef] [PubMed]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
W. Davis and Y. Ohno, “Toward an improved color rendering metric,” Proc. SPIE 5941, 59411G (2005). [CrossRef]
F. Viénot, G. Coron, and B. Lavédrine, “LEDs as a tool to enhance faded colors of museums artifacts,” J. Cult. Herit. 12(4), 431–440 (2011). [CrossRef]
R. S. Berns, “Designing white-light LED lighting for the display of art: A feasibility study,” Color Res. Appl. 36(5), 324–334 (2011). [CrossRef]
L.-C. Ou, M. Ronnier Luo, P.-L. Sun, N.-C. Hu, H.-S. Chen, S.-S. Guan, A. Woodcock, J. L. Caivano, R. Huertas, A. Treméau, M. Billger, H. Izadan, and K. Richter, “A cross-cultural comparison of colour emotion for two-colour combinations,” Color Res. Appl. 37(1), 23–43 (2012). [CrossRef]
A. Žukauskas, R. Vaicekauskas, A. Tuzikas, P. Vitta, and M. Shur, “Statistical approach to color rendition properties of solid-state light sources,” Proc. SPIE 8123, 81230X 81230X-9 (2011). [CrossRef]
A. Žukauskas, R. Vaicekauskas, P. Vitta, A. Tuzikas, A. Petrulis, and M. Shur, “Color rendition engine,” Opt. Express 20(5), 5356–5367 (2012). [CrossRef] [PubMed]
J. A. Worthey, “Color rendering: Asking the question,” Color Res. Appl. 28(6), 403–412 (2003). [CrossRef]
H. W. Leverenz, “Optimum efficiency conditions for white luminescent screens in kinescopes,” J. Opt. Soc. Am. 30(7), 309–315 (1940). [CrossRef]
H. F. Ivey, “Color and efficiency of luminescent light sources,” J. Opt. Soc. Am. 53(10), 1185–1198 (1963). [CrossRef]
J. A. Worthey, “Color rendering: Asking the question,” Color Res. Appl. 28(6), 403–412 (2003). [CrossRef]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
W. Davis and Y. Ohno, “Toward an improved color rendering metric,” Proc. SPIE 5941, 59411G (2005). [CrossRef]
F. Viénot, G. Coron, and B. Lavédrine, “LEDs as a tool to enhance faded colors of museums artifacts,” J. Cult. Herit. 12(4), 431–440 (2011). [CrossRef]
2. Optimization approach
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron. 15(6), 1753–1762 (2009). [CrossRef]
Spectral Database, University of Joensuu Color Group, http://spectral.joensuu.fi/.
M. S. Rea and J. P. Freyssinier-Nova, “Color rendering: A tale of two metrics,” Color Res. Appl. 33(3), 192–202 (2008). [CrossRef]
W. Davis and Y. Ohno, “Color quality scale,” Opt. Eng. 49(3), 033602 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, R. Gaska, and M. S. Shur, “Optimization of white polychromatic semiconductor lamps,” Appl. Phys. Lett. 80(2), 234–236 (2002). [CrossRef]
3. Results and discussion
3.1 Band broadening
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, and M. Shur, “Solid-state lamps with optimized color saturation ability,” Opt. Express 18(3), 2287–2295 (2010). [CrossRef] [PubMed]
A. Žukauskas, R. Vaicekauskas, P. Vitta, A. Tuzikas, A. Petrulis, and M. Shur, “Color rendition engine,” Opt. Express 20(5), 5356–5367 (2012). [CrossRef] [PubMed]
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
3.2 Band splitting
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef]
A. Žukauskas, R. Vaicekauskas, P. Vitta, A. Tuzikas, A. Petrulis, and M. Shur, “Color rendition engine,” Opt. Express 20(5), 5356–5367 (2012). [CrossRef] [PubMed]
3.3 Color-shift vector distributions
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron. 15(6), 1753–1762 (2009). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron. 15(6), 1753–1762 (2009). [CrossRef]
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron. 15(6), 1753–1762 (2009). [CrossRef]
4. Summary
Acknowledgments
References and links
A. Žukauskas, M. S. Shur, and R. Gaska, Introduction to Solid-State Lighting (Wiley, 2002). | |
D. A. Steigerwald, J. C. Bhat, D. Collins, R. M. Fletcher, M. O. Holcomb, M. J. Ludowise, P. S. Martin, and S. L. Rudaz, “Illumination with solid state lighting technology,” IEEE J. Sel. Top. Quantum Electron. 8(2), 310–320 (2002). [CrossRef] | |
M. S. Shur and A. Žukauskas, “Solid-state lighting: Toward superior illumination,” Proc. IEEE 93(10), 1691–1703 (2005). [CrossRef] | |
E. F. Schubert and J. K. Kim, “Solid-state light sources getting smart,” Science 308(5726), 1274–1278 (2005). [CrossRef] [PubMed] | |
A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys. 43(35), 354006 (2010). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, R. Gaska, and M. S. Shur, “Optimization of white polychromatic semiconductor lamps,” Appl. Phys. Lett. 80(2), 234–236 (2002). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, and M. S. Shur, “Rendering a color palette by light-emitting diodes,” Appl. Phys. Lett. 93(2), 021109 (2008). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, and M. S. Shur, “Spectral optimization of phosphor-conversion light-emitting diodes for ultimate color rendering,” Appl. Phys. Lett. 93(5), 051115 (2008). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, and M. Shur, “Solid-state lamps with optimized color saturation ability,” Opt. Express 18(3), 2287–2295 (2010). [CrossRef] [PubMed] | |
W. Davis and Y. Ohno, “Toward an improved color rendering metric,” Proc. SPIE 5941, 59411G (2005). [CrossRef] | |
V. Viliūnas, H. Vaitkevičius, R. Stanikūnas, A. Švegžda, and Z. Bliznikas, “LED-based metameric light sources: Rendering the colours of objects and other colour quality criteria,” Lighting Res. Tech. 43(3), 321–330 (2011). [CrossRef] | |
F. Viénot, G. Coron, and B. Lavédrine, “LEDs as a tool to enhance faded colors of museums artifacts,” J. Cult. Herit. 12(4), 431–440 (2011). [CrossRef] | |
C. L. Sanders, “Color preferences for natural objects,” Illum. Eng. 54, 452–456 (1959). | |
R. S. Berns, “Designing white-light LED lighting for the display of art: A feasibility study,” Color Res. Appl. 36(5), 324–334 (2011). [CrossRef] | |
L.-C. Ou, M. Ronnier Luo, P.-L. Sun, N.-C. Hu, H.-S. Chen, S.-S. Guan, A. Woodcock, J. L. Caivano, R. Huertas, A. Treméau, M. Billger, H. Izadan, and K. Richter, “A cross-cultural comparison of colour emotion for two-colour combinations,” Color Res. Appl. 37(1), 23–43 (2012). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, A. Tuzikas, P. Vitta, and M. Shur, “Statistical approach to color rendition properties of solid-state light sources,” Proc. SPIE 8123, 81230X 81230X-9 (2011). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, P. Vitta, A. Tuzikas, A. Petrulis, and M. Shur, “Color rendition engine,” Opt. Express 20(5), 5356–5367 (2012). [CrossRef] [PubMed] | |
J. A. Worthey, “Color rendering: Asking the question,” Color Res. Appl. 28(6), 403–412 (2003). [CrossRef] | |
H. W. Leverenz, “Optimum efficiency conditions for white luminescent screens in kinescopes,” J. Opt. Soc. Am. 30(7), 309–315 (1940). [CrossRef] | |
H. F. Ivey, “Color and efficiency of luminescent light sources,” J. Opt. Soc. Am. 53(10), 1185–1198 (1963). [CrossRef] | |
A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron. 15(6), 1753–1762 (2009). [CrossRef] | |
Spectral Database, University of Joensuu Color Group, http://spectral.joensuu.fi/. | |
M. S. Rea and J. P. Freyssinier-Nova, “Color rendering: A tale of two metrics,” Color Res. Appl. 33(3), 192–202 (2008). [CrossRef] | |
W. Davis and Y. Ohno, “Color quality scale,” Opt. Eng. 49(3), 033602 (2010). [CrossRef] | |
G. Wyszecki and W. S. Stiles, Color Science: Concepts and Methods, Quantitative Data and Formulae (Wiley, 2000). | |
P. van der Burgt and J. van Kemenade, “About color rendition of light sources: The balance between simplicity and accuracy,” Color Res. Appl. 35(2), 85–93 (2010). |
OCIS Codes
(230.3670) Optical devices : Light-emitting diodes
(330.1690) Vision, color, and visual optics : Color
(330.1715) Vision, color, and visual optics : Color, rendering and metamerism
(110.2945) Imaging systems : Illumination design
ToC Category:
Optical Devices
History
Original Manuscript: February 22, 2012
Revised Manuscript: April 10, 2012
Manuscript Accepted: April 10, 2012
Published: April 13, 2012
Virtual Issues
Vol. 7, Iss. 6 Virtual Journal for Biomedical Optics
Citation
Artūras Žukauskas, Rimantas Vaicekauskas, and Michael Shur, "Color-dulling solid-state sources of light," Opt. Express 20, 9755-9762 (2012)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-20-9-9755
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References
- A. Žukauskas, M. S. Shur, and R. Gaska, Introduction to Solid-State Lighting (Wiley, 2002).
- D. A. Steigerwald, J. C. Bhat, D. Collins, R. M. Fletcher, M. O. Holcomb, M. J. Ludowise, P. S. Martin, and S. L. Rudaz, “Illumination with solid state lighting technology,” IEEE J. Sel. Top. Quantum Electron.8(2), 310–320 (2002). [CrossRef]
- M. S. Shur and A. Žukauskas, “Solid-state lighting: Toward superior illumination,” Proc. IEEE93(10), 1691–1703 (2005). [CrossRef]
- E. F. Schubert and J. K. Kim, “Solid-state light sources getting smart,” Science308(5726), 1274–1278 (2005). [CrossRef] [PubMed]
- A. Žukauskas, R. Vaicekauskas, and M. S. Shur, “Color rendition properties of solid-state lamps,” J. Phys. D Appl. Phys.43(35), 354006 (2010). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, R. Gaska, and M. S. Shur, “Optimization of white polychromatic semiconductor lamps,” Appl. Phys. Lett.80(2), 234–236 (2002). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, and M. S. Shur, “Rendering a color palette by light-emitting diodes,” Appl. Phys. Lett.93(2), 021109 (2008). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, and M. S. Shur, “Spectral optimization of phosphor-conversion light-emitting diodes for ultimate color rendering,” Appl. Phys. Lett.93(5), 051115 (2008). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, and M. Shur, “Solid-state lamps with optimized color saturation ability,” Opt. Express18(3), 2287–2295 (2010). [CrossRef] [PubMed]
- W. Davis and Y. Ohno, “Toward an improved color rendering metric,” Proc. SPIE5941, 59411G (2005). [CrossRef]
- V. Viliūnas, H. Vaitkevičius, R. Stanikūnas, A. Švegžda, and Z. Bliznikas, “LED-based metameric light sources: Rendering the colours of objects and other colour quality criteria,” Lighting Res. Tech.43(3), 321–330 (2011). [CrossRef]
- F. Viénot, G. Coron, and B. Lavédrine, “LEDs as a tool to enhance faded colors of museums artifacts,” J. Cult. Herit.12(4), 431–440 (2011). [CrossRef]
- C. L. Sanders, “Color preferences for natural objects,” Illum. Eng.54, 452–456 (1959).
- R. S. Berns, “Designing white-light LED lighting for the display of art: A feasibility study,” Color Res. Appl.36(5), 324–334 (2011). [CrossRef]
- L.-C. Ou, M. Ronnier Luo, P.-L. Sun, N.-C. Hu, H.-S. Chen, S.-S. Guan, A. Woodcock, J. L. Caivano, R. Huertas, A. Treméau, M. Billger, H. Izadan, and K. Richter, “A cross-cultural comparison of colour emotion for two-colour combinations,” Color Res. Appl.37(1), 23–43 (2012). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, A. Tuzikas, P. Vitta, and M. Shur, “Statistical approach to color rendition properties of solid-state light sources,” Proc. SPIE8123, 81230X 81230X-9 (2011). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, P. Vitta, A. Tuzikas, A. Petrulis, and M. Shur, “Color rendition engine,” Opt. Express20(5), 5356–5367 (2012). [CrossRef] [PubMed]
- J. A. Worthey, “Color rendering: Asking the question,” Color Res. Appl.28(6), 403–412 (2003). [CrossRef]
- H. W. Leverenz, “Optimum efficiency conditions for white luminescent screens in kinescopes,” J. Opt. Soc. Am.30(7), 309–315 (1940). [CrossRef]
- H. F. Ivey, “Color and efficiency of luminescent light sources,” J. Opt. Soc. Am.53(10), 1185–1198 (1963). [CrossRef]
- A. Žukauskas, R. Vaicekauskas, F. Ivanauskas, H. Vaitkevičius, P. Vitta, and M. S. Shur, “Statistical approach to color quality of solid-state lamps,” IEEE J. Sel. Top. Quantum Electron.15(6), 1753–1762 (2009). [CrossRef]
- Spectral Database, University of Joensuu Color Group, http://spectral.joensuu.fi/ .
- M. S. Rea and J. P. Freyssinier-Nova, “Color rendering: A tale of two metrics,” Color Res. Appl.33(3), 192–202 (2008). [CrossRef]
- W. Davis and Y. Ohno, “Color quality scale,” Opt. Eng.49(3), 033602 (2010). [CrossRef]
- G. Wyszecki and W. S. Stiles, Color Science: Concepts and Methods, Quantitative Data and Formulae (Wiley, 2000).
- P. van der Burgt and J. van Kemenade, “About color rendition of light sources: The balance between simplicity and accuracy,” Color Res. Appl.35(2), 85–93 (2010).
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