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A qualitative examination of performance and energy yield of photovoltaic modules in southern Norway

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  • Midtgard, Ole-Morten
  • Sætre, Tor Oskar
  • Yordanov, Georgi
  • Imenes, Anne Gerd
  • Nge, Chee Lim

Abstract

Three different, commercially available photovoltaic modules have been monitored outdoors in the town of Grimstad, Norway. The present paper describes the experimental setup that was implemented, in particular details of the low-cost electronic loads. Results compare measured performance with manufacturer's data, and temperature measurements enable a comparison with performance at standard test condition temperature. Overall, the monocrystalline module performed best both regarding maximum efficiency and overall energy production, whereas the module based on triple junction amorphous silicon technology had the worst performance considering these criteria. The gross numbers of energy yield corresponding to measurements over a whole year show that photovoltaic technology could become a viable alternative also in a Northern country like Norway.

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  • Midtgard, Ole-Morten & Sætre, Tor Oskar & Yordanov, Georgi & Imenes, Anne Gerd & Nge, Chee Lim, 2010. "A qualitative examination of performance and energy yield of photovoltaic modules in southern Norway," Renewable Energy, Elsevier, vol. 35(6), pages 1266-1274.
  • Handle: RePEc:eee:renene:v:35:y:2010:i:6:p:1266-1274
    DOI: 10.1016/j.renene.2009.12.002
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    References listed on IDEAS

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    1. Gxasheka, A.R. & van Dyk, E.E. & Meyer, E.L., 2005. "Evaluation of performance parameters of PV modules deployed outdoors," Renewable Energy, Elsevier, vol. 30(4), pages 611-620.
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    3. Sadok, Mohammed & Mehdaoui, Ahmed, 2008. "Outdoor testing of photovoltaic arrays in the Saharan region," Renewable Energy, Elsevier, vol. 33(12), pages 2516-2524.
    4. van Dyk, E.E & Meyer, E.L & Vorster, F.J & Leitch, A.W.R, 2002. "Long-term monitoring of photovoltaic devices," Renewable Energy, Elsevier, vol. 25(2), pages 183-197.
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    2. Hosenuzzaman, M. & Rahim, N.A. & Selvaraj, J. & Hasanuzzaman, M. & Malek, A.B.M.A. & Nahar, A., 2015. "Global prospects, progress, policies, and environmental impact of solar photovoltaic power generation," Renewable and Sustainable Energy Reviews, Elsevier, vol. 41(C), pages 284-297.
    3. Yordanov, Georgi Hristov & Midtgård, Ole-Morten & Saetre, Tor Oskar, 2012. "Series resistance determination and further characterization of c-Si PV modules," Renewable Energy, Elsevier, vol. 46(C), pages 72-80.
    4. Xue, Yan & Lindkvist, Carmel Margaret & Temeljotov-Salaj, Alenka, 2021. "Barriers and potential solutions to the diffusion of solar photovoltaics from the public-private-people partnership perspective – Case study of Norway," Renewable and Sustainable Energy Reviews, Elsevier, vol. 137(C).
    5. Chen, Cheng-Chuan & Chang, Hong-Chan & Kuo, Cheng-Chien & Lin, Chien-Chin, 2013. "Programmable energy source emulator for photovoltaic panels considering partial shadow effect," Energy, Elsevier, vol. 54(C), pages 174-183.
    6. Lamont, Lisa A. & El Chaar, Lana, 2011. "Enhancement of a stand-alone photovoltaic system’s performance: Reduction of soft and hard shading," Renewable Energy, Elsevier, vol. 36(4), pages 1306-1310.
    7. Hai Lan & Jinfeng Dai & Shuli Wen & Ying-Yi Hong & David C. Yu & Yifei Bai, 2015. "Optimal Tilt Angle of Photovoltaic Arrays and Economic Allocation of Energy Storage System on Large Oil Tanker Ship," Energies, MDPI, vol. 8(10), pages 1-16, October.
    8. Syed Zahurul Islam & Mohammad Lutfi Othman & Muhammad Saufi & Rosli Omar & Arash Toudeshki & Syed Zahidul Islam, 2020. "Photovoltaic modules evaluation and dry-season energy yield prediction model for NEM in Malaysia," PLOS ONE, Public Library of Science, vol. 15(11), pages 1-25, November.

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