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@book{rockafellar-1970a,
	added-at = {2008-03-02T02:12:02.000+0100},
	address = {Princeton, N. J.},
	author = {Rockafellar, R. Tyrrell},
	biburl = {https://www.bibsonomy.org/bibtex/223aa07ea525f6dd11585fc2037a0daf1/dmartins},
	callnumber = {UniM Maths 516.08 R59},
	description = {robotica-bib},
	interhash = {30830becb0a2c5ebca5946b895d9740a},
	intrahash = {23aa07ea525f6dd11585fc2037a0daf1},
	keywords = {imported},
	notes = {A SRL reference.},
	publisher = {Princeton University Press},
	series = {Princeton Mathematical Series},
	timestamp = {2008-03-02T02:14:11.000+0100},
	title = {Convex analysis},
	year = 1970
}

@book{schanda2007colorimetry,
	title={Colorimetry: Understanding the CIE System},
	author={Schanda, J.},
	isbn={9780470175620},
	url={https://books.google.pl/books?id=uZadszSGe9MC},
	year={2007},
	publisher={Wiley}
}

@book{netravali,
   title =     {Digital Pictures: Representation, Compression, and Standards},
   author =    {Arun N. Netravali, Barry G. Haskell (auth.)},
   publisher = {Springer US},
   isbn =      {978-1-4899-6820-3,978-1-4899-6950-7},
   year =      {1995},
   series =    {Applications of Communications Theory},
   edition =   {1},
   volume =    {},
   url =       {http://gen.lib.rus.ec/book/index.php?md5=b908343726d8daf4edb46344701480ff}
}

@book{nobohoruohta,
   title =     {Colorimetry: Fundamentals and Applications (The Wiley-IS\&T Series in Imaging Science and Technology)},
   author =    {Noboru Ohta, Alan Robertson},
   publisher = {},
   isbn =      {0470094729,9780470094723,9780470094730},
   year =      {2006},
   series =    {},
   edition =   {1},
   volume =    {},
   url =       {http://gen.lib.rus.ec/book/index.php?md5=CEFE4C6DC1169E52986716617E07BBCE}
}

@techreport{IEC61996-2-1,
  address = {Geneva, CH},
  type = {Standard},
  title = {Multimedia systems and equipment - Colour measurement and management - Part 2-1: Colour management - Default RGB colour space - sRGB},
  shorttitle = {IEC 61966-2-1:1999},
  url = {https://webstore.iec.ch/publication/6169},
  language = {en},
  number = {IEC 61966-2-1:1999},
  institution = {International Electrotechnical Commission},
  author = {IEC},
  year = {1999}
}

@book{Poynton,
 author = {Poynton, Charles},
 title = {Digital Video and HD: Algorithms and Interfaces},
 year = {2012},
 isbn = {9780123919267, 9780123919328},
 edition = {2},
 publisher = {Morgan Kaufmann Publishers Inc.},
 address = {San Francisco, CA, USA},
} 


@article{MacAdam:42,
author = {David L. MacAdam},
journal = {J. Opt. Soc. Am.},
keywords = {Color difference; Color vision; Optical devices; Stray light; Visible light; Wollaston prisms},
number = {5},
pages = {247--274},
publisher = {OSA},
title = {Visual Sensitivities to Color Differences in Daylight$\ast$},
volume = {32},
month = {May},
year = {1942},
url = {http://www.osapublishing.org/abstract.cfm?URI=josa-32-5-247},
doi = {10.1364/JOSA.32.000247},
abstract = {An apparatus is described which facilitates the presentation of pairs of variable colors without variation of luminance. With this instrument, various criteria of visual sensitivity to color difference have been investigated. The standard deviation of color matching was finally adopted as the most reproducible criterion. The test field was two degrees in diameter, divided by a vertical biprism edge, and was viewed centrally with a surrounding field of forty-two degrees diameter uniformly illuminated so as to have a chromaticity similar to that of the I.C.I. Standard Illuminant C (average daylight). The luminance of the test field was maintained constant at 15 millilamberts, and the surrounding field was 7.5 millilamberts. These fields were viewed monocularly through an artificial pupil, 2.6 mm in diameter. Over twenty-five thousand trials at color matching have been recorded for a single observer, and the readings are analyzed in detail and compared with previously available data. The standard deviations of the trials are represented in terms of distance in the standard 1931 I.C.I. chromaticity diagram. These increments of distance are represented as functions of position alongstraight lines in the chromaticity diagram, and also as functions of direction of departure from points representing certain standard chromaticities. Such representations are simpler than the traditional representations of wave-length thresholds and purity thresholds as functions of wave-length, and the accuracy of the representations is improved by this simplicity. Chromaticity discrimination for non-spectral colors is represented simultaneously and on the same basis as for spectral colors. Small, equally noticeable chromaticity differences are represented for all chromaticities and for all kinds of variations by the lengths of the radii of a family of ellipses drawn on the standard chromaticity diagram. These ellipses cannot be transformed into equal-sized circles by any projective transformation of the standard chromaticity diagram. The consistency of these data with the results of other investigators is exhibited in terms of the noticeabilities of wave-length differences in the spectrum and of the noticeabilities of purity differences from a neutral stimulus, as functions of dominant wave-length.},
}

@article{Wyszecki:63,
author = {G\"{u}nter Wyszecki},
journal = {J. Opt. Soc. Am.},
keywords = {CIE color spaces; Color; Color difference; Color spaces; Industrial inspection; Standard observers},
number = {11},
pages = {1318--1319},
publisher = {OSA},
title = {Proposal for a New Color-Difference Formula},
volume = {53},
month = {Nov},
year = {1963},
url = {http://www.osapublishing.org/abstract.cfm?URI=josa-53-11-1318},
doi = {10.1364/JOSA.53.001318},
abstract = {},
}

@article{Houser2016,
	author = {Kevin Houser and Michele Mossman and Kevin Smet and Lorne Whitehead},
	title = {Tutorial: Color Rendering and Its Applications in Lighting},
	journal = {LEUKOS},
	volume = {12},
	number = {1-2},
	pages = {7-26},
	year  = {2016},
	publisher = {Taylor & Francis},
	doi = {10.1080/15502724.2014.989802},

	URL = { 
		https://doi.org/10.1080/15502724.2014.989802
	    
	},
	eprint = { 
		https://doi.org/10.1080/15502724.2014.989802
	    
	}
}

@misc{fruit_basket_alessi,
	key = {zzz},
	howpublished = {\url{https://commons.wikimedia.org/wiki/File:Fruit_basket_alessi.JPG}},
	note = {Dostęp: 27 listopada 2019}
}

@misc{plotdigitizer,
	key = {zzz1},
	howpublished = {\url{http://plotdigitizer.sourceforge.net/}},
	note = {Dostęp: 13 grudnia 2019}
}



@article{Royer2018,
  doi = {10.1080/15502724.2018.1500485},
  url = {https://doi.org/10.1080/15502724.2018.1500485},
  year = {2018},
  month = oct,
  publisher = {Informa {UK} Limited},
  volume = {15},
  number = {1},
  pages = {29--53},
  author = {Michael P. Royer},
  title = {Comparing Measures of Gamut Area},
  journal = {{LEUKOS}}
}

@article{LightingAnswers,
	title = {Light Sources and Color},
	author = {Mark Rea, Lei Deng, Robert Wolsey},
	year = {2004},
	publisher = {Lighting Research Center},
	journal = {Lighting Research Center},
	url = {https://www.lrc.rpi.edu/programs/nlpip/publicationDetails.asp?id=901&type=2}
}

@article{LightingAnswersFSI,
	title = {Full-Spectrum Lighting Sources},
	author = {Rensselaer Polytechnic Institute},
	year = {2003},
	publisher = {Lighting Research Center},
	journal = {Lighting Research Center},
	url = {https://www.lrc.rpi.edu/programs/nlpip/lightingAnswers/fullSpectrum/abstract.asp}
}

@inbook{FSIRestaurant,
	author = {Robson, Stephani and Kimes, Sheryl},
	year = {2019},
	month = {06},
	pages = {127-143},
	title = {6. Examining the Effects of Full-Spectrum Lighting in a Restaurant},
	isbn = {9781501736520},
	journal = {The Next Frontier of Restaurant Management},
	doi = {10.7591/9781501736520-011}
}


@book{Boyce2014,
  doi = {10.1201/b16707},
  url = {https://doi.org/10.1201/b16707},
  year = {2014},
  month = apr,
  publisher = {{CRC} Press},
  author = {Peter Robert Boyce},
  title = {Human Factors in Lighting}
}

@article{Rea2008,
  doi = {10.1002/col.20399},
  url = {https://doi.org/10.1002/col.20399},
  year = {2008},
  publisher = {Wiley},
  volume = {33},
  number = {3},
  pages = {192--202},
  author = {Mark S. Rea and Jean P. Freyssinier-Nova},
  title = {Color rendering: A tale of two metrics},
  journal = {Color Research {\&} Application}
}

@book{Westland2012,
  doi = {10.1002/9780470710890},
  url = {https://doi.org/10.1002/9780470710890},
  year = {2012},
  month = jul,
  publisher = {John Wiley {\&} Sons,  Ltd},
  author = {Stephen Westland and Caterina Ripamonti and Vien Cheung},
  title = {Computational Colour Science using {MATLAB}{\textregistered}}
}

@inproceedings{Davis2005,
  doi = {10.1117/12.615388},
  url = {https://doi.org/10.1117/12.615388},
  year = {2005},
  month = aug,
  publisher = {{SPIE}},
  author = {Wendy Davis and Yoshi Ohno},
  editor = {Ian T. Ferguson and John C. Carrano and Tsunemasa Taguchi and Ian E. Ashdown},
  title = {Toward an improved color rendering metric},
  booktitle = {Fifth International Conference on Solid State Lighting}
}

@article{vanTrigt,
author = {van Trigt, C.},
title = {Color rendering, a reassessment},
journal = {Color Research \& Application},

volume = {24},
number = {3},
pages = {197-206},
keywords = {color rendering, chromatic adaptation, CIE, light sources},
doi = {10.1002/(SICI)1520-6378(199906)24:3<197::AID-COL6>3.0.CO;2-S},
url = {https://onlinelibrary.wiley.com/doi/abs/10.1002/%28SICI%291520-6378%28199906%2924%3A3%3C197%3A%3AAID-COL6%3E3.0.CO%3B2-S},
eprint = {https://onlinelibrary.wiley.com/doi/pdf/10.1002/%28SICI%291520-6378%28199906%2924%3A3%3C197%3A%3AAID-COL6%3E3.0.CO%3B2-S},
abstract = {Abstract The deficiencies of the CIE method of measuring and specifying colour rendering properties of light sources are discussed. © 1999 John Wiley \& Sons, Inc. Col Res Appl, 24, 197–206, 1999},
year = {1999}
}