Open Access
Issue
E3S Web Conf.
Volume 694, 2026
Third International Conference on Green Energy, Environmental Engineering and Sustainable Technologies 2025 (ICGEST 2025)
Article Number 03005
Number of page(s) 11
Section Green Energy Systems & Technology
DOI https://doi.org/10.1051/e3sconf/202669403005
Published online 16 February 2026
  1. Effects of Light Color on the Solar Cell Output, Stanley Micklavzina, Frank Vignola Dept. of Physics Modified by Shannon Boettcher, Dept. of Chemistry, University of Oregon [Google Scholar]
  2. Photovoltaic Efficiency: Lesson 2, The Temperature Effect — Fundamentals Article [Google Scholar]
  3. Tiberiu Tudorache, Liviu Kreindler, Design of a Solar Tracker System for PV Power Plants. Acta Polytechnica Hungarica Vol. 7, No. 1, 2010 [Google Scholar]
  4. Jafari Fesharaki, Majid Dehghani, J. Jafari Fesharaki The Effect of Temperature on Photovoltaic Cell Efficiency‖ Proceedings of the 1st International Conference on Emerging Trends in Energy Conservation - ETEC [Google Scholar]
  5. Notton, G., Cristofari, C., Mattei, M. and Poggi, P. (2005). Modelling of a double-glass photovoltaic module using finite differences, Appl. Therm. Eng, 25, 2854–2877. [Google Scholar]
  6. Hart, G.W. and Raghuraman, P., (1982). Simulation of thermal aspects of residential photovoltaic systems, MIT Report, DOE/ET/20279-202. [Google Scholar]
  7. Garg, H.P. and Agarwal, R.K., (1995). Some aspects of a PV/T collector/forced circulation flat plate solar water heater with solar cells, Energ. Convers. Manag, 36, 87–99. [Google Scholar]
  8. Evans, D.L. and Florschuetz, L.W. (1978). Terrestrial concentrating photovoltaic power system studies, Sol. Energ, 20, 37–43. [Google Scholar]
  9. Luque, A. and Hegedus, S. (2003). ‖ Handbook of Photovoltaic Scienceand Engineering. John Wiley & Sons Ltd, The Atrium, Southern Gate, Chichester, West Sussex PO19 8SQ, England, pp. 296–297. [Google Scholar]
  10. Li, Zhe, Jian Yang, and Pouya Asareh Nejad Dezfuli. "Study on the influence of light intensity on the performance of solar cell." International Journal of Photoenergy 2021.1 (2021): 6648739. [Google Scholar]
  11. Glowienka, Damian, and Yulia Galagan. "Light intensity analysis of photovoltaic parameters for perovskite solar cells." Advanced Materials 34.2 (2022): 2105920. [Google Scholar]
  12. Tianlong, Y.U.A.N., et al. "Research on the Influence of Different Light Intensities on the Characteristics of Solar Cells." Mechanical Engineering Science 6.2 (2025). [Google Scholar]
  13. Kim, Ji Hoon, et al. "Effects of various light-intensity and temperature environments on the photovoltaic performance of dye-sensitized solar cells." Solar Energy 113 (2015): 251–257. [Google Scholar]
  14. Widjanarko, W., et al. "Experimental analysis of temperature, light intensity, and humidity on rooftop standalone solar power plant." IOP Conference Series: Materials Science and Engineering. Vol. 1073. No. 1. IOP Publishing, 2021. [Google Scholar]
  15. Pescetelli, Sara, et al. "Integration of two-dimensional materials-based perovskite solar panels into a stand-alone solar farm." Nature Energy 7.7 (2022): 597–607. [CrossRef] [Google Scholar]

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