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MATLAB modelling of double sided photovoltaic cell module

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, the equatorial coordinate system is taken as the celestial coordinates, the double-sided photovoltaic module irradiance model is established by using the MATLAB simulation software, and the double-sided photovoltaic module irradiance model is combined with the photovoltaic module model (Jianhui (2001)) to form the mathematical model of the real-time generation system of double-sided photovoltaic modules. The effectiveness of the simulation model was verified by building an experimental platform, and the output characteristics of the optimal line spacing between the double-sided p-v module and the single-sided p-v module were further tested and compared.
Wydawca
Rocznik
Strony
12--25
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • China University of Mining and Technology, Xuzhou City, Jiangsu Province 221116, China
autor
  • York University, Yorkshire, UK, YO10 5DD, China
autor
  • State Grid NARI Group China Power Purui Power Engineering Co., Ltd., Changping District, Beijing 102200, China
autor
  • China University of Mining and Technology, Xuzhou City, Jiangsu Province 221116, China
autor
  • China University of Mining and Technology, Xuzhou City, Jiangsu Province 221116, China
Bibliografia
  • Chunhua, W., Kun, X. and Jianming, H. (2011). Research on photovoltaic distributed MPPT based on non inverse buck boost converter. New Electrical Energy Technology, 30(04), pp. 84–88.
  • Hong, J., Renzu, Z., Pei, Z., Lihua, Z., Xue, S. and Peifa, D. (2020). Study on climatological prediction model of hourly solar irradiance. Jiangsu Agricultural Science, 48(11), pp. 275–281.
  • Jianbo, B. (2014). Modeling, simulation and optimization of solar photovoltaic system. Electronic Industry Press.
  • Jianhui, S., Shijie, Y. and Wei, Z. (2001). Mathematical model for silicon solar cell engineering. Journal of Solar Energy, 22(04), pp. 409–412.
  • Jiping, Z., Guoqiang, H., Hongbo, L., Xiaojun, Y., Cui, L. and Xiao, Y. (2020). Effects of different ground backgrounds on the power generation performance of double-sided photovoltaic modules. Acta Solar Energy, 41(03), pp. 298–304.
  • Lorenzo, E., Sala, G., Lopez-Romero, S. and Luque, A. (1985). Diffusing reflectors for bifacial photovoltaic panels. Solar Cells, 13(3), pp. 277–292.
  • Marion, B. (2017). Numerical method for angle-of-incidence correction factors for diffuse radiation incident photovoltaic modules. Solar Energy, 147, pp. 344–348.
  • Marion, B., MacAlpine, S., Deline, C., Asgharzadeh, A., Toor, F., Riley, D., Stein, J. and Hansen, C. (2017). A practical irradiance model for bifacial PV modules. 2017 IEEE 44th Photovoltaic Specialist Conference (PVSC), Washington, DC, pp. 1537–1542.
  • Perez, R., Ineichen, P., Seals, R., Michalsky, J. and Stewart, R. (1990). Modeling daylight availability and irradiance components from direct and global irradiance. Solar Energy, 44(5), pp. 271–289.
  • Shiqin, W. (2019). Design and research of photovoltaic power generation system with double-sided photovoltaic modules. Solar Energy, 05, pp. 30–33.
  • Van Kerschaver, E., Zechner, C. and Dicker, J. (2000). Double sided minority carrier collection in silicon solar cells. IEEE Transactions on Electron Devices, 47(4), pp. 711–717.
  • Wu, Z., Hu, Y., Wen, J. X., Zhou, F. and Ye, X. (2020). A Review for solar panel fire accident prevention in large-scale PV applications. IEEE Access, 8, pp. 132466–132480. doi: 10.1109/ACCESS.2020.301021.
  • Wu, Z., Zhou, Z. and Mohammed, A. (2020). Time-effective dust deposition analysis of PV modules based on finite element simulation for candidate site determination. IEEE Access, 8, pp. 1–1. doi: 10.1109/ACCESS.2020.2985158.
  • Yan, C., Lina, W. and Kai, S. (2013). An independent photovoltaic power supply system based on analog circuit MPPT technology. New Electrical Energy Technology, 32(03), pp. 22–26.
  • Yihui, P. and Wei, D. (2016). Comparative study on the performance of two improved variable step MPPT algorithms. New Electrical Energy Technology, 35(03), pp. 69–75.
  • Yusufoglu, U., Pletzer, U., Koduvelikulathu, L. J., Comparotto, C., Kopecek, R. and Kurz, H. (2014). Analysis of the annual performance of bifacial modules and optimization methods. IEEE Journal of Photo voltaics, 5(1), pp. 320–328.
  • Zhang, Y., Yu, Y., Meng, F. and Liu, Z. (2020). Experimental investigation of the shading and mismatch effects on the performance of bifacial photovoltaic modules. In IEEE Journal of Photovoltaics, 10(1), pp. 296–305. doi: 10.1109/JPHOTOV.2019.2949766.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-40bd577f-74bf-4fe7-8430-41d95a349d3e
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