Impact of the Thicknesses of the p and p+ Regions on the Electrical Parameters of a Bifacial PV Cell
- 1 Laboratoire d’Energies Thermiques REnouvelables (L.E.T.RE), Département de Physique, Unité de Recherche et de Formation en Sciences Exactes et Appliquées, Université Joseph KI-ZERBO, Ouagadougou, Burkina Faso
- 2 Laboratoire d’Energies Thermiques REnouvelables (L.E.T.RE), Département de Physique, Unité de Recherche et de Formation en Sciences Exactes et Appliquées, Université Joseph KI-ZERBO, Ouagadougou, Burkina Faso
- 3 Centre Universitaire Polytechnique de Kaya (CUP-Kaya), Kaya, Burkina Faso
- 4 Laboratoire d’Energies Thermiques REnouvelables (L.E.T.RE), Département de Physique, Unité de Recherche et de Formation en Sciences Exactes et Appliquées, Université Joseph KI-ZERBO, Ouagadougou, Burkina Faso
- 5 Laboratoire d’Energies Thermiques REnouvelables (L.E.T.RE), Département de Physique, Unité de Recherche et de Formation en Sciences Exactes et Appliquées, Université Joseph KI-ZERBO, Ouagadougou, Burkina Faso
- 6 Laboratoire d’Energies Thermiques REnouvelables (L.E.T.RE), Département de Physique, Unité de Recherche et de Formation en Sciences Exactes et Appliquées, Université Joseph KI-ZERBO, Ouagadougou, Burkina Faso
Abstract
The present paper is about a contribution to the bifacial PV cell performances improvement. The PV cell efficiency is weak compared to the strong energy demand. In this study, the base thickness impacts and the p + zone size influence are evaluated on the rear face of the polycrystalline back surface field bifacial silicon PV cell. The photocurrent density and photovoltage behaviors versus thickness of these regions are studied. From a three-dimensional grain of the polycrystalline bifacial PV cell, the magneto-transport and continuity equations of excess minority carriers are solved to find the expression of the density of excess minority carriers and the related electrical parameters, such as the photocurrent density, the photovoltage and the electric power for simultaneous illumination on both sides. The photocurrent density, the photovoltage and electric power versus junction dynamic velocity decrease for different thicknesses of base and the p + region increases for simultaneous illumination on both sides. It is found that the thickness of the p + region at 0.1 μm and the base size at 100 μm allow reaching the best bifacial PV cell performances. Consequently, it is imperative to consider the reduction in the thickness of the bifacial PV cell for exhibition of better performance. This reduced the costs and increase production speed while increasing conversion efficiency.
- Chander, S., Purohit, A., Sharma, A., Nehra, S.P. and Dhaka, M. S. (2015) Impact of Temperature on Performance of Series and Parallel Connected Mono-Crystalline Silicon Solar Cells. Energy Reports, 1, 175-180. https://doi.org/10.1016/j.egyr.2015.09.001
- Zoungrana, S.M., Zerbo, I., Soro, B. and Joseph, D. (2017) 3-D Modeling of Grains Sizes Effects on Polycrystalline Silicon Solar Cell under Intense Light Illumination. SYLWAN English Edition, 161, 2-13.
- Moharram, K.A. (2013) Enhancing the Performance of Photovoltaic Panels by Water Cooling. Ain Shams Engineering Journal, 4, 869-877. https://doi.org/10.1016/j.asej.2013.03.005
- Wolf, M. and Ralph, E.L. (1965) Effect of Thickness on Short-Circuit Current of Silicon Solar Cells. IEEE Transactions on Electron Devices, 12, 470-474. https://doi.org/10.1109/T-ED.1965.15528
- Sow, O., Ba, M., El Moujtaba, M., Traore, Y., Sow, E., Sarr, C., Diop, M. and Sissoko, G. (2020) Electrical Parameters Determination from Base Thickness Optimization in a Silicon Solar Cell under Influence of the Irradiation Energy Flow of Charged Particles. Energy and Power Engineering, 12 1-15. https://doi.org/10.4236/epe.2020.121001
- Dione, M.M., Thiame, M., Bako, Z.N., Samoura, A., Barro, F.I. and Sissoko, G. (2009) Etude en regime statique d’une photopile au silicium a jonction verticale parallele sous eclairement monochromatique. Journal des Sciences, 9, 43-50.
- Rocher, A. (1987) Origine structurale et chimique de l’activité électrique des joints de grains dans le silicium. Physical Review Applied, 22, 591-595. https://doi.org/10.1051/rphysap:01987002207059100
- Ouedraogo, A., De Dieu, V., Barandja, B., Zerbo, I., Zoungrana, M. and Ouagadougou, B.F. (2017) A Theoretical Study of Radio Wave Attenuation through a Polycrystalline Silicon Solar Cell. Turkish Journal of Physics, 41, 314-325.
- Sam, R., Zouma, B., Zougmoré, F., Koalaga, Z., Zoungrana, M. and Zerbo, I. (2012) 3D Determination of the Minority Carrier Lifetime and the p-n Junction Recombination Velocity of a Polycrystalline Silicon Solar. IOP Conference Series: Materials Science and Engineering, 29, Article ID: 012018. https://doi.org/10.1088/1757-899X/29/1/012018
- Zouma, B., Maiga, A. S., Dieng, M., Zougmore, F. and Sissoko, G. (2009) 3d Approach of Spectral Response for a Bifacial Silicon Solar Cell under a Constant Magnetic Field. Global Journal of Pure and Applied Sciences, 15, 117-124. https://doi.org/10.4314/gjpas.v15i1.44908