This paper reviews experimental conditions used in previous studies to explore the relationship between lamp colour properties and apparent brightness in interior spaces. A comparison is needed to identify the extent to which results from different studies can be reliably compared and extended to real lighting and to guide the design of further research. It is found that further work is needed to enable this comparison.
van Creveld K.An investigation into the relationship between luminance and brightness of strongly chromatic light sources. Lighting Res. Technol.1999; 31: 117-122.
11.
Zheleznikova OE, Myasoedova EI.Comparison of luminosities of lighting installations with discharge light sources. Light & Eng.1995; 3: 38-39.
12.
Randhawa HS.Visual characteristics of light sources for residential road lighting, proc. NPLCIE-UK Conference Visual Scales: Photometric and Colorimetric Aspects, March 1997: 65-68.
Levermore GJ.Perception of lighting and brightness from HID light sources. Lighting Res. Technol.1994; 26: 145-150.
18.
Alman DH.Errors of the standard photometric system when measuring the brightness of general illumination light sources. J. Illuminating Eng. Soc.1977; October: 55-62.
19.
Harrington RE.Effect of color temperature on apparent brightness. J. Opt. Soc. Am.1954; 44: 113-116.
20.
Ray S.The evaluation of a daylight tungsten lamp for task lighting. Undergraduate research project, Department of Human Sciences, Loughborough University, 1989.
21.
Vrabel PL, Bernecker CA, Mistrick RG.Visual performance and visual clarity under electric light sources: Part II-visual clarity. J. Illuminating Eng. Soc.1998; 27: 29-41.
22.
Boyce PR, Cuttle C.Effect of correlated colour temperature on the perception of interiors and colour discrimination. Lighting Res. Technol.1990; 22: 19-36.
23.
Flynn JE, Spencer TJ.The effects of light source colour on user impression and satisfaction. J. Illuminating Eng. Soc.1977; 6: 167-179.
24.
McNelis JF, Howley JG, Dore GE, DeLaney WB.Subjective appraisal of colored scenes under various fluorescent lamp colors. Lighting Des. Appl.1985; 15: 25-29.
25.
DeLaney WB, Hughes PC, McNelis JF, Sarver JF, Soules TF.An examination of visual clarity with high colour rendering fluorescent light sources. J. Illuminating Eng. Soc.1978; 7: 74-84.
26.
Pracejus WG.Preliminary report on a new approach to color acceptance studies. Illuminating Eng.1967; 62: 663-673.
27.
Fotios SA.Lamp colour properties and apparent brightness: a review. Lighting Res. Technol.2001; 33: 163-181.
28.
Tiller DK, Rea MS.Semantic differential scaling: Prospects in lighting research. Lighting Res. Technol.1992; 24: 43-52.
29.
Hesselgren S.The language of architecture. Lund, Sweden: Studentlitteratur, 1967.
30.
Coolican H.Reseach methods and statistics in psychology, second edition. London: Hodder & Stoughton, 1994.
31.
Havlicek LL, Crain RD.Practical statistics for the physical sciences. Washington, DC: American Chemical Society, 1988.
32.
Hughes PC, McNelis JF.Lighting, productivity, and the work environment. Lighting Des. Appl.1978; 8: 32-40.