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The Journal of the Illuminating Engineering Society
Volume 18, 2022 - Issue 3
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Articles

Effectiveness of Light Source Efficiency for Characterization of Colored Surface Luminance

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Pages 374-386 | Received 08 Feb 2021, Accepted 30 Jun 2021, Published online: 26 Aug 2021

References

  • Bellia L, Pedace A, Fragliasso F. 2017. Indoor lighting quality: effects of different wall colours. Lighting Res Technol. 1–16. doi:10/f9sgq7
  • Berson DM. 2002. Phototransduction by retinal ganglion cells that set the circadian clock. Science. 295(5557):1070–1073.
  • Boivin DB, Duffy JF, Kronauer RE, Czeisler CA. 1996. Dose-response relationships for resetting of human circadian clock by light. Nature. 379(6565):540–542.
  • Boyce PR. 2017. Human factors in lighting. 3 ed. Boca Raton (BR): CRC Press, Taylor & Francis Group.
  • Cai W, Yue J, Dai Q, Hao L, Lin Y, Shi W, Huang Y, Wei M. 2018. The impact of room surface reflectance on corneal illuminance and rule-of-thumb equations for circadian lighting design. Build Environ. 141:288–297.
  • Cuttle C. 2018. A fresh approach to interior lighting design: the design objective – direct flux procedure. Light Res Technol. SAGE Publications Ltd STM. 50(8):1142–1163. doi:https://doi.org/10.1177/1477153517734401.
  • Cuttle C. 2020. Making the switch from task illumination to ambient illumination standards: principles and practicalities, including energy implications. Light Res Technol. 52(4):455–471.
  • Dai Q, Hao L, Lin Y, Cui Z. 2016. Spectral optimization simulation of white light based on the photopic eye-sensitivity curve. J Appl Phys. 119(5):053103.
  • Dai Q, Huang Y, Hao L, Lin Y, Chen K. 2018. Spatial and spectral illumination design for energy-efficient circadian lighting. Build Environ. 146:216–225.
  • David A, Fini PT, Houser KW, Ohno Y, Royer MP, Smet KAG, Wei M, Whitehead L. 2015. Development of the IES method for evaluating the color rendition of light sources. Opt Express. Optical Society of America. 23(12):15888–15906. doi:https://doi.org/10.1364/oe.23.015888.
  • DiLaura D, Houser K, Mistrick R, Steffy G, eds. 2011. The lighting handbook: reference and application. 10 ed. New York (NY): Illuminating Engineering Society of North America.
  • Durmus D 2019. Impact of surface reflectance on spectral optimization for melanopic illuminance and energy efficiency. Optical Devices and Materials for Solar Energy and Solid-state Lighting. Paper PT2C.5.
  • Durmus D, Davis W. 2015. Optimising light source spectrum for object reflectance. Opt Express. Optical Society of America. 23(11):A456–A464. doi:https://doi.org/10.1364/OE.23.00A456.
  • Figueiro M, Steverson B, Heerwagen J, Yucel R, Roohan C, Sahin L, Kampschroer K, Rea M. 2019. Light, entrainment and alertness: a case study in offices. Light Res Technol. 52:147715351988515.
  • He G, Huafeng Y. 2011. Optimal spectra of the phosphor-coated white LEDs with excellent color rendering property and high luminous efficacy of radiation. Opt Express. 19(3):2519.
  • Hjetland GJ, Pallesen S, Thun E, Kolberg E, Nordhus IH, Flo E. 2020. Light interventions and sleep, circadian, behavioral, and psychological disturbances in dementia: a systematic review of methods and outcomes. Sleep Med Rev. 52:101310.
  • Hong S, Kim I, Kim H, Sohn A, Choi A-S, Sung M, Jeong JW. 2017. Evaluation of the visibility of colored objects under led lighting with various correlated color temperatures. Color Res Appl. 42(1):78–88.
  • IES Method for Evaluating Light Source Color Rendition. 2020. IES. ANSI/IES TM-30-20. New York (NY): Illuminating Engineering Society.
  • International Commission on Illumination. 1974. Method of measuring and specifying colour rendering properties of light sources. Vol. 13.2. Paris, France: CIE Central Bureau.
  • International Commission on Illumination. 1988. Spectral luminous efficiency functions based on brightness matching for monochromatic point sources, 2 and 10 fields. Vol. 75. Vienna, Austria: CIE Central Bureau.
  • Kim IS, Choi AS, Sung MK. 2017. Development of a colour quality assessment tool for indoor luminous environments affecting the circadian rhythm of occupants. Build Environ. 126:252–265.
  • Lucas RJ, Peirson SN, Berson DM, Brown TM, Cooper HM, Czeisler CA, Figueiro MG, Gamlin PD, Lockley SW, O'Hagan JB, et al. 2014. Measuring and using light in the melanopsin age. Trends Neurosci. 37(1):1–9. doi:10/f5pd4c
  • Oh JH, Yang SJ, Sung Y-G, Do YR. 2012. Excellent color rendering indexes of multi-package white LEDs. Opt Express. 20(18):20276.
  • Orava J. 2021. Munsell colors glossy (all) (spectrofotometer measured) – spectral. [ Accessed Jan 24]. https://sites.uef.fi/spectral/munsell-colors-glossy-all-spectrofotometer-measured/.
  • Potočnik J, Košir M. 2020. Influence of commercial glazing and wall colours on the resulting non-visual daylight conditions of an office. Build Environ. 171:106627.
  • Preciado OU, Manzano ER. 2018. Spectral characteristics of road surfaces and eye transmittance: effects on energy efficiency of road lighting at mesopic levels. Light Res Technol. 50(6):842–861.
  • Rea MS, Figueiro MG. 2018. Light as a circadian stimulus for architectural lighting. Light Res Technol. 50(4):497–510.
  • Rea MS, Mou X, Bullough JD. 2016. Scene brightness of illuminated interiors. Light Res Technol. SAGE Publications Ltd STM. 48(7):823–831. doi:10/f9c7vr.
  • Rossi M. 2019. Circadian lighting design in the LED era. Research for development. Cham, Switzerland: Springer International Publishing.
  • Yao Q. 2015. Spectral reflectance luminous efficacy. Optik. 126(24):5790–5796.
  • Yao Q, Cai W, Li M, Hu Z, Xue P, Dai Q. 2020. Efficient circadian daylighting: a proposed equation, experimental validation, and the consequent importance of room surface reflectance. Energy Build. 210:109784.
  • Zhang F, Haisong X, Wang Z. 2017a. Optimizing spectral compositions of multichannel LED light sources by IES color fidelity index and luminous efficacy of radiation. Appl Opt. 56(7):1962.
  • Zhang J, Hu R, Xie B, Yu X, Luo X, Yu Z, Zhang L, Wang H, Jin X. 2017b. Energy-saving light source spectrum optimization by considering object’s reflectance. IEEE Photonics J. 9(2):1–11.

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