Civil Engineering Reference
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Edwards CJ, Gibbons RB (2008) Relationship of vertical illuminance to pedestrian visibility in
crosswalks. Transp Res Rec: J Transport Res Board 2056:9-16
Ekrias A, Eloholma M, Halonen L (2007) Analysis of road lighting quantity and quality in varying
weather conditions. Leukos 4(2):89-98
FHWA (2008) Federal Highway Administration Publication FHWA-HRT -08-053, Informational
report on lighting design for midblock crosswalks. FHWA, Washington
Fisher AJ, Hall RR (1976) Road luminances based on detection of change of visual angle. Light
Res Technol 8:187
Fisher AJ, Hall RR (1978) The effect of presence lights on the detection of change of vehicle
headway. Australian Road Res 8(2):13-16
Gibbons RB (2007) The influence of vertical illuminance on pedestrian visibility. Proceedings, Part
2, CIE 26th Session, Beijing D4:123-127
Gibbons RB, Hankey JM (2006) Influence of vertical illuminance on pedestrian visibility in
crosswalks. Transp Res Rec: J Transport Res Board 1973:105-112
Gibson JJ (1950) The perception of the visual world. Houghton Mifflin, Boston
Hansen ER, Larsen JS (1979) Reflection factors for pedestrian's clothing. Light Res Technol
11(3):154-157
Hargroves RA, Scott PP (1979) Measurements of road lighting and accidents—the results. Public
Light 44:213-221
Hirakawa S, Sato M, Sugawara T, Toeda K, Ito H, Sakamoto S (2007) Total revealing power for
tunnel lighting (second report). Proceedings, Part 2, CIE 26th Session of CIE, Part 2, Beijing
D4:148:151
Holladay LL (1927) Action of a light source in the field of view in lowering visibility. J Opt Soc
Am 14:1
Ito H, Sat M, Oshima A, Yamada S, Ayama M (2007) Measurement of luminance discrimination
threshold for positive and negative contrast stimuli to investigate visibility under tunnel entrance
lighting. Proceedings, CIE 26th Session, Beijing D4:152-155
Jainski P (1962) Das Verhalten der Unterschiedsempfindlichkeit bei Blendung mit verschiedenen
Lichtfarben. Lichttechnik 14:60
Janoff MS (1990) The effect of visibility on driver performance: a dynamic experiment. J Illumin
Eng Soc 19:57-63
Janoff MS (1992) The relationship between visibility level and subjective ratings of visibility. J
Illumin Eng Soc 21:98-107
Lecocq J (1991) Visibility levl in outdoor lighting. Adrian model applied to spherical cap targets.
Proceedings of 22nd session of CIE, Melbourne D4:48-51
Lecocq J (1999) Calculation of the visibility level of spherical targets in roads. Light Res Technol
31(4):171-175
Lee DN (1980) The optic flow field: the foundation of vision. Philos Trans R Soc London. Ser B,
Biol Sci 290:169-179
Mayeur A, Brémond R, Bastien C (2008) The effect of task and eccentricity of the target on detection
thresholds in mesopic vision: implications for road lighting. Hum Fact 50:712-721
Ménard J, Cariou J (1994) Road lighting: assessment of an installation based on contrast of a
standard target. Light Res Technol 26:19-22
Mollard R (2003) Hypovigilance and micro-sleep while driving a stretch of motorway. Paper
presented at CNBE/BNCV Lighting Conference 2003, Brussels
Muzet A (2003) La conduit automobile de nuit en function de l'éclairage. Paper presented at
CNBE/BNCV Lighting Conference 2003, Brussels
Narisada K (2009) Balance between energy, environment and visual performance. Proceedings of
24th Session of CIE, Warsaw D 4:17-22
Narisada K, Karasawa Y (2001) Re-consideration of the revealing power on the basis of visibility
level. Proceedings of International Lighting Congress, Istanbul 2, pp 473-480
Narisada K, Karasawa Y, Shirao K (2003) Design parameters of road lighting and revealing power.
Proceedings, Part 2, CIE 25th Session,San Diego D4:10-13
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