• Acta Photonica Sinica
  • Vol. 50, Issue 3, 140 (2021)
Dongjin LIAO1, Zhiping HUANG1、2, Yan LU1, Xiaomin FANG1, and Yunlong HUANG1、*
Author Affiliations
  • 1College of Information Engineering, Quzhou College of Technology, Quzhou, Zhejiang324000, China
  • 2National-Local Joint Engineering Laboratory of New Energy Photoelectric Devices, Hebei University, Baoding, Hebei07100, China
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    DOI: 10.3788/gzxb20215003.0312003 Cite this Article
    Dongjin LIAO, Zhiping HUANG, Yan LU, Xiaomin FANG, Yunlong HUANG. Optimization of Solar Radiation Model for Bifacial PV Modules[J]. Acta Photonica Sinica, 2021, 50(3): 140 Copy Citation Text show less
    References

    [1] Z ZHANG, M WU, Y LU. The mathematical and experimental analysis on the steady-state operating temperature of bifacial photovoltaic modules. Renewable Energy, 155, 658-668(2020).

    [2] J R LEDESMA, R H ALMEIDA, M F MARTINEZ. A simulation model of the irradiation and energy yield of large bifacial photovoltaic plants. Solar Energy, 206, 522-538(2020).

    [3] H NUSSBAUMER, M KLENK, M MORF. Energy yield prediction of a bifacial PV system with a miniaturized test array. Solar Energy, 179, 316-325(2019).

    [4] H NUSSBAUMER, G JANSSEN, D BERRIAN. Accuracy of simulated data for bifacial systems with varying tilt angles and share of diffuse radiation. Solar Energy, 197, 6-21(2020).

    [5] R KOPECEK, J LIBAL. Towards large-scale deployment of bifacial photovoltaics. Nature Energy, 3, 443-446(2018).

    [6] D CHUDINZOW, M KLENK, L ELTROP. Impact of field design and location on the techno-economic performance of fixed-tilt and single-axis tracked bifacial photovoltaic power plants. Solar Energy, 207, 564-578(2020).

    [7] C DELINE, S A PELAEZ, S MACALPINE. Estimating and parameterizing mismatch power loss in bifacial photovoltaic systems. Progress in Photovoltaics: Research and Applications, 28, 691-703(2020).

    [8] D CHUDINZOW, M KLENK, L ELTROP. Impact of field design and location on the techno-economic performance of fixed-tilt and single-axis tracked bifacial photovoltaic power plants. Solar Energy, 207, 564-578(2020).

    [9] C W HANSEN, C DELINE, S MACALPINE. Analysis of irradiance models for bifacial PV modules. IEEE Electron Device Letters, 36, 138-143(2015).

    [10] U A YUSUFOGLU, T M PLETZER, L J KODUVELIKULATHU. Analysis of the annual performance of bifacial modules and optimization methods. IEEE Journal of Photovoltaics, 5, 320-328(2015).

    [11] I SHOUKRY, J LIBAL, R KOPECEK. Modelling of bifacial gain for stand-alone and in-field installed bifacial PV modules. Energy Procedia, 92, 600-608(2016).

    [12] D CHUDINZOW, J HAAS, G DIAZ-FERRAN. Simulating the energy yield of a bifacial photovoltaic power plant. Solar Energy, 183, 812-822(2019).

    [13] S A PELAEZ, C DELINE, S M MACALPINE. Comparison of bifacial solar irradiance model predictions with field validation. IEEE Journal of Photovoltaics, 9, 82-88(2018).

    [14] J APPELBAUM. Bifacial photovoltaic panels field. Renewable Energy, 85, 338-343(2016).

    [15] B MARION, S MACALPINE, C DELINE. A practical irradiance model for bifacial PV modules, 1537-1542(2017).

    Dongjin LIAO, Zhiping HUANG, Yan LU, Xiaomin FANG, Yunlong HUANG. Optimization of Solar Radiation Model for Bifacial PV Modules[J]. Acta Photonica Sinica, 2021, 50(3): 140
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