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The impact of selected parameters on the efficiency of a photovoltaic installation with bifacial modules in local conditions

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents a comparison of the results of simulation by a photovoltaic installation with bifacial modules. The analyzed 20 kWp PV installation was located in the Kuyavian-Pomeranian Voivodeship. The article compares how the energy production of installations with bifacial modules changes depending on the angle of inclination, the distance between the rows of modules and the orientation. The results obtained in the study indicate that albedo is an important, but not the only parameter to be considered when designing a farm with bifacial modules.
Rocznik
Tom
Strony
87--93
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
  • Bydgoszcz University of Technology, Poland
  • Czestochowa University of Technology, Poland
  • Al-Mustansiriya University, Iraq
Bibliografia
  • 1.Aryal, A. & Bhattarai, N. (2018) Modeling and simulation of 115.2 kWp grid-connected solar PV system using PVSYST. Kathford J. Eng. Manag., 1, 31-34.
  • 2.Branker, K., Pathak, M. & Pearce, J. (2011) A review of solar photovoltaic levelized cost of electricity. Renewable and Sustainable Energy Reviews, 15, 9, 4470-4482.
  • 3.Boddapati, V. & Daniel, S.A. (2020) Performance analysis and investigations of grid-connected Solar Power Park in Kurnool, South India. Energy Sustain. Dev., 55, 161-169.
  • 4.Gallardo-Saavedra, S. & Karlsson, B. (2018) Simulation, validation, and analysis of shading effects on a PV system. Sol. Energy, 170, 828-839.
  • 5.Gostein, M., Marion, B. & Stueve, B. (2020) Spectral Effects in Albedo and Rearside Irradiance Measurement for Bifacial Performance Estimation. 2020 47th IEEE Photovoltaic Specialists Conference (PVSC), 2020, 0515-0519.
  • 6.Idzikowski, A., Cierlicki, T., Al-Zubiedy, A. & Zawada, M. (2022) Management the operation process of photovoltaic modules in terms of quality and performance evaluation - a case study. Energies, 15, 1652.
  • 7.Kopecek, R. & Libal, J. (2021) Bifacial Photovoltaics 2021: Status, Opportunities and Challenges. Energies, 14, 2076.
  • 8.Kurz, D., Lewandowski, K. & Szydłowska, M. (2018) Analiza uzysku energii z fotowoltaicznych ogniw bifacjalnych. Część 1 - budowa i parametry ogniw bifacjalnych. Poznan University of Technology Academic Journals, No 94 Electrical Engineering.
  • 9.Oliveira-Pinto, S. & Stokkermans, J., (2020) Assessment of the potential of different floating solar technologies - Overview and analysis of different case studies. Energy Conversion and Management, 211, 112747.
  • 10.Porter, W. (2019) Bifacial Modules: There Are Two Sides to Every Solar Panel, White Paper, 5.
  • 11.Rodríguez-Gallegos, C.D., Bieri, M., Gandhi, O., Singh, J.P., Reindl, T. & Panda, S.K. (2018) Monofacial vs bifacial Si-based PV modules: Which one is more cost-effective? Sol. Energy, 176, 412-438.
  • 12.Russell, T., Saive, R., Augusto, A., Bowden, S. & Atwater, H. (2017) The influence of spectral albedo on bifacial solar cells: A theoretical and experimental study. IEEE Journal of Photovoltaics, 7, 6, 1611-1618.
  • 13.Walichnowska, P., Mroziński, A., Idzikowski, A. & Fröhlich, S. (2022) Energy efficiency analysis of 1 MW PV farm mounted on fixed and tracking systems. Budownictwo o Zoptymalizowanym Potencjale Energetycznym, 11, 75-83.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6958c148-b7a5-45d5-8b4c-f946388fd327
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