CINOC - Dispositif de mesure de la Luminance du Ciel Nocturne par Imagerie
CINOC Dispositif de mesure de la luminance du CIel NOCturne par imagerie 20 / 22 REFERENCES 1. Zissis, G.; Bertoldi, P. A Review of Advances in Lighting Systems’ Technology—The Way Toward Lighting 4.0 Era. IEEE Open J. Ind. Applicat. 2023 , 4 , 111–120, doi:10.1109/OJIA.2023.3263182. 2. Owens, A.C.S.; Lewis, S.M. The Impact of Artificial Light at Night on Nocturnal Insects: A Review and Synthesis. Ecology and Evolution 2018 , 8 , 11337–11358, doi:10.1002/ece3.4557. 3. Stewart, A.J.A. Impacts of Artificial Lighting at Night on Insect Conservation. Insect Conserv Diversity 2021 , 14 , 163– 166, doi:10.1111/icad.12490. 4. Kamei, M.; Jikumaru, S.; Hoshino, S.; Ishikura, S.; Wada, M. Effects of Replacing Outdoor Lighting with White LEDs with Different Correlated Color Temperatures on the Attraction of Nocturnal Insects. Appl Entomol Zool 2021 , 56 , 225–233, doi:10.1007/s13355-021-00729-7. 5. Boyes, D.H.; Evans, D.M.; Fox, R.; Parsons, M.S.; Pocock, M.J.O. Street Lighting Has Detrimental Impacts on Local Insect Populations. Sci. Adv. 2021 , 7 , eabi8322, doi:10.1126/sciadv.abi8322. 6. Varela Perez, A.M. The Increasing Effects of Light Pollution on Professional and Amateur Astronomy. Science 2023 , 380 , 1136–1140, doi:10.1126/science.adg0269. 7. Green, R.F.; Luginbuhl, C.B.; Wainscoat, R.J.; Duriscoe, D. The Growing Threat of Light Pollution to Ground-Based Observatories. Astron Astrophys Rev 2022 , 30 , 1, doi:10.1007/s00159-021-00138-3. 8. Falchi, F.; Ramos, F.; Bará, S.; Sanhueza, P.; Jaque Arancibia, M.; Damke, G.; Cinzano, P. Light Pollution Indicators for All the Major Astronomical Observatories. Monthly Notices of the Royal Astronomical Society 2022 , 519 , 26–33, doi:10.1093/mnras/stac2929. 9. Kyba, C.C.M.; Altıntaş, Y.Ö.; Walker, C.E.; Newhouse, M. Citizen Scientists Report Global Rapid Reductions in the Visibility of Stars from 2011 to 2022. Science 2023 , 379 , 265–268, doi:10.1126/science.abq7781. 10. Bennie, J.; Davies, T.W.; Inger, R.; Gaston, K.J. Mapping Artificial Lightscapes for Ecological Studies. Methods Ecol Evol 2014 , 5 , 534–540, doi:10.1111/2041-210X.12182. 11. Czaja, M.; Kołton, A. How Light Pollution Can Affect Spring Development of Urban Trees and Shrubs. Urban Forestry & Urban Greening 2022 , 77 , 127753, doi:10.1016/j.ufug.2022.127753. 12. Davies, T.W.; Smyth, T. Why Artificial Light at Night Should Be a Focus for Global Change Research in the 21st Century. Global Change Biology 2018 , 24 , 872–882, doi:10.1111/gcb.13927. 13. Gaston, K.J.; Holt, L.A. Nature, Extent and Ecological Implications of Night ‐ time Light from Road Vehicles. Journal of Applied Ecology 2018 , 55 , 2296–2307, doi:10.1111/1365-2664.13157. 14. Navara, K.J.; Nelson, R.J. The Dark Side of Light at Night: Physiological, Epidemiological, and Ecological Consequences. Journal of Pineal Research 2007 , 43 , 215–224, doi:10.1111/j.1600-079X.2007.00473.x. 15. Ecological Consequences of Artificial Night Lighting ; Rich, C., Longcore, T., Eds.; Island Press: Washington, DC, 2010; ISBN 978-1-55963-129-7. 16. Knop, E.; Zoller, L.; Ryser, R.; Gerpe, C.; Hörler, M.; Fontaine, C. Artificial Light at Night as a New Threat to Pollination. Nature 2017 , 548 , 206–209, doi:10.1038/nature23288. 17. Macgregor, C.J.; Pocock, M.J.O.; Fox, R.; Evans, D.M. Pollination by Nocturnal L Epidoptera, and the Effects of Light Pollution: A Review. Ecological Entomology 2015 , 40 , 187–198, doi:10.1111/een.12174. 18. Saunders, D.S. Circadian Rhythms and the Evolution of Photoperiodic Timing in Insects. Physiological Entomology 2009 , 34 , 301–308, doi:10.1111/j.1365-3032.2009.00699.x. 19. Tataroglu, O.; Emery, P. Studying Circadian Rhythms in Drosophila Melanogaster. Methods 2014 , 68 , 140–150, doi:10.1016/j.ymeth.2014.01.001. 20. Miller, C.R.; Barton, B.T.; Zhu, L.; Radeloff, V.C.; Oliver, K.M.; Harmon, J.P.; Ives, A.R. Combined Effects of Night Warming and Light Pollution on Predator–Prey Interactions. Proc. R. Soc. B. 2017 , 284 , 20171195, doi:10.1098/rspb.2017.1195. 21. Minnaar, C.; Boyles, J.G.; Minnaar, I.A.; Sole, C.L.; McKechnie, A.E. Stacking the Odds: Light Pollution May Shift the Balance in an Ancient Predator–Prey Arms Race. Journal of Applied Ecology 2015 , 52 , 522–531, doi:10.1111/1365- 2664.12381. 22. Cho, Y.; Ryu, S.-H.; Lee, B.R.; Kim, K.H.; Lee, E.; Choi, J. Effects of Artificial Light at Night on Human Health: A Literature Review of Observational and Experimental Studies Applied to Exposure Assessment. Chronobiology International 2015 , 32 , 1294–1310, doi:10.3109/07420528.2015.1073158. 23. European Commission Light Pollution Reduction Measures in Europe ; 2023; 24. European Commission Light Pollution: Mitigation Measures for Environmental Protection 2023. 25. CIE TC 2-95: Measurement of Obtrusive Light and Sky Glow 2025. 26. Réf : Kurt W. Riegel, Light Pollution. Science 179 ,1285-1291(1973) 27. Sky Quality Meter. 28. https://www.statistiques.developpement-durable.gouv.fr/la-pollution-lumineuse-en-france-en-2023-0 29. Bortle, J.E. Introducing the Bortle Dark-Sky Scale, Sky & Telescope Magazine 2001 , 126-129. 30. Bará, S.; Aubé, M.; Barentine, J.; Zamorano, J. Magnitude to Luminance Conversions and Visual Brightness of the Night Sky. Monthly Notices of the Royal Astronomical Society 2020 , 493 , 2429–2437, doi:10.1093/mnras/staa323. 31. Cauwerts, C.; PhD, M.B.; Deneyer, A. Comparison of the Vignetting Effects of Two Identical Fisheye Lenses. LEUKOS 2012 , 8 , 181–203, doi:10.1582/LEUKOS.2012.08.03.002. 32. Inanici, M. Evaluation of High Dynamic Range Photography as a Luminance Data Acquisition System. Lighting Research & Technology 2006 , 38 , 123–134, doi:10.1191/1365782806li164oa. 33. Wagdy, A.; Garcia-Hansen, V.; Isoardi, G.; Pham, K. A Parametric Method for Remapping and Calibrating Fisheye Images for Glare Analysis. Buildings 2019 , 9 , 219, doi:10.3390/buildings9100219.
RkJQdWJsaXNoZXIy MTIzMTM=