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LEUKOS
The Journal of the Illuminating Engineering Society
Volume 18, 2022 - Issue 2
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Research Article

Visualization of Lighting Quality and Object Appearance When Using Multichannel Light Sources

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Pages 232-245 | Received 12 Jun 2020, Accepted 05 Feb 2021, Published online: 08 Apr 2021

References

  • Baaijens JPW, Van Der Burgt PJM, Poort SHM, Schutte CP. 2011. Method and system for emphasizing object color. Munich (Germany): European Patent Office patent EP2528481B1.
  • Babilon S, Khanh TQ. 2018. Color appearance rating of familiar real objects under immersive viewing conditions. Color Res Appl. 43(4):551–568.
  • Bao W, Wei M. 2019. Change of gamut size for producing preferred color appearance from 20 to 15000 lux. LEUKOS.21(1):21–24.
  • Davis W. 2010. Color quality scale. Opt Eng. 49(3):033602.
  • Esposito T, Houser K. 2019. Models of colour quality over a wide range of spectral power distributions. Light Res Technol. 51(3):331–352.
  • Finlayson G, Mackiewicz M, Hurlbert A, Pearce B, Crichton S. 2014. On calculating metamer sets for spectrally tunable LED illuminators. J Opt Soc Am A. 31(7):1577.
  • Garufo G, Lomberg M. 2020. Object lighting. Germany patent DE102018130596A1. Munich (Germany): European Patent Office.
  • Hashimoto K, Yano T, Shimizu M, Nayatani Y. 2007. New method for specifying color-rendering properties of light sources based on feeling of contrast. Color Res Appl. 32(5):361–371.
  • He G, Zheng L. 2010. White-light LED clusters with high color rendering. Opt Lett. 35(17):2955.
  • Houser K. 2018. Light sources that increase object Chroma when dimmed. European Patent Office patent. EP3590313.  Munich (Germany): European Patent Office.
  • Hu W, Davis W. 2019. The effect of control resolution on the usability of color-tunable lighting systems. LEUKOS - J Illum Eng Soc North Am. 15(1):3–16.
  • Hunt RWG, Pointer MR. 2011. Measuring colour. 4th ed. | Wiley. 4th ed. Chichester (UK): John Wiley & Sons.
  • Illuminating Engineering Society of North America. 2015. IES-TM-30-15 method for evaluating light source colour rendition. New York (NY): IESNA.
  • Illuminating Engineering Society of North America. 2018. ANSI/IES-TM-30-18 method for evaluating light source colour rendition. New York (NY): IESNA.
  • International Commision on Illumination. 1974. Method of measuring and specifying colour rendering properties of light sources. Vienna (Austria): CIE.
  • International Commision on Illumination. 2017. CIE 224:2017 colour fidelity index for accurate scientific use. Vienna (Austria): CIE.
  • Jost-Boissard S, Avouac P, Fontoynont M. 2015. Assessing the colour quality of LED sources: naturalness, attractiveness, colourfulness and colour difference. Light Res Technol. 47(7):769–794.
  • Judd DB. 1967. A flattery index for artificial illuminants. Illum Eng. 62:593–598.
  • Khanh T, Bodrogi P, Vinh Q, Stojanovic D. 2017. Colour preference, naturalness, vividness and colour quality metrics, part 1: experiments in a room. Light Res Technol. 49(6):697–713.
  • Llenas A, Carreras J. 2019. Arbitrary spectral matching using multi-LED lighting systems. Opt Eng. 58(3):1.
  • Masuda O, Nascimento SMC. 2012. Lighting spectrum to maximize colorfulness. Opt Lett. 37(3):407.
  • Mukai K. 2019. Relationship between colour rendering indices and subjective colour differences relationship between colour rendering indices and subjective colour differences. Proceedings of the 29th CIE Sess Washingt; Washington, DC. p. 980–989.
  • Ohno Y. 2004. Spectral design considerations for white LED color rendering. Opt. Eng. 44(11):111302.
  • Ohno Y, Fein M. 2014. Vision experiment on acceptable and preferred white light chromaticity for lighting. CIE 2014 Light Qual Energy Effic; Kuala Lumpur. p. 192–199.
  • Rea MS, Freyssinier-Nova JP. 2008. Color rendering: A tale of two metrics. Color Res Appl. 33(3):192–202.
  • Royer M. 2020. Show me the data: characterizing the performance of color tunable light sources – illuminating engineering society. IES Light Educ Webinars. Webinar.
  • Royer M, Wilkerson A, Wei M. 2018a. Human perceptions of colour rendition at different chromaticities. Light Res Technol. 50(7):965–994.
  • Royer MP, Houser KW, David A. 2018b. Chroma shift and gamut shape: going beyond average color fidelity and gamut area. LEUKOS - J Illum Eng Soc North Am. 14(3):149–165.
  • Sanders CL. 1959. Assessment of color rendition under an iIluminant using color tolerances for natural objects. J Illum Eng Soc. 54:640–646.
  • Smet K, Ryckaert WR, Pointer MR, Deconinck G, Hanselaer P. 2011. Colour appearance rating of familiar real objects. Color Res Appl. 36(3):192–200.
  • Smet KAG. 2020. Tutorial: the LuxPy Python toolbox for lighting and color science. LEUKOS. 16(3):179–201.
  • Smet KAG, Ryckaert WR, Pointer MR, Deconinck G, Hanselaer P. 2012. A memory colour quality metric for white light sources. Energy Build. 49:216–225.
  • Szabó F, Bodrogi P, Schanda J. 2009. A colour harmony rendering index based on predictions of colour harmony impression. Light Res Technol. 41(2):165–182.
  • Szabó F, Kéri R, Schanda J, Csuti P, Wilm A, Baur E. 2016. A study of preferred colour rendering of light sources: shop lighting. Light Res Technol. 48(3):286–306.
  • Teunissen C, van der Heijden F, Poort S, de Beer E. 2017. Characterising user preference for white LED light sources with CIE colour rendering index combined with a relative gamut area index. Light Res Technol. 49(4):461–480.
  • Thornton WA. 1974. A validation of the color-preference index. J Illum Eng Soc. 4(1):48–52.
  • Tuzikas A, Žukauskas A, Vaicekauksas R, Petrulis A, Vitta P, Shur M. 2014. Artwork visualization using a solid-state lighting engine with controlled photochemical safety. Opt Express. 22(14):16802.
  • Vick KJ, Allen GR, Beers WW, Boyle OR. 2014. Enhanced color-preference light sources cross-reference to related applications. European Patent Office patent EP3044504B1. Munich (Germany): European Patent Office.
  • Wang Y, Wei M. 2018. Preference among light sources with different D uv but similar colour rendition: a pilot study. Light Res Technol. 50(7):1013–1023.
  • Wei M, Bao W, Huang H-P. 2020. Consideration of light level in specifying light source color rendition. LEUKOS. 16(1):55–65.
  • Wei M, Houser K, David A, Krames M. 2017. Colour gamut size and shape influence colour preference. Light Res Technol. 49(8):992–1014.
  • Žukauskas A, Vaicekauskas R, Ivanauskas F, Vaitkevičius H, Shur MS. 2008. Spectral optimization of phosphor-conversion light-emitting diodes for ultimate color rendering. Appl Phys Lett. 93(5):051115.

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