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Three Dimensional Study of Spectral Response of Polycrystalline Silicon Solar Cells: Vertical Junction Frequency Modulation Scheme
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作者 Nouhou Bako Zeinabou hawa ly diallo +4 位作者 Aminata Gueye Camarat Moustapha Thiam Dan Maza Abouzeidi Madougou Saidou Gregoire Sissoko 《Journal of Energy and Power Engineering》 2013年第5期903-906,共4页
关键词 多晶硅太阳能电池 光谱响应 三维 调频 垂直 量子效率 动态频率 调制频率
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Study of the Intrinsic Recombination Velocity at the Junction of Silicon Solar under Frequency Modulation and Irradiation 被引量:2
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作者 El Hadji Ndiaye Gokhan Sahin +4 位作者 Moustapha Dieng Amary Thiam hawa ly diallo Mor Ndiaye Grégoire Sissoko 《Journal of Applied Mathematics and Physics》 2015年第11期1522-1535,共14页
In this study, a method for determining the intrinsic recombination velocity at the junction of a silicon solar cell is presented. The expression of intrinsic recombination velocity at the junction was established und... In this study, a method for determining the intrinsic recombination velocity at the junction of a silicon solar cell is presented. The expression of intrinsic recombination velocity at the junction was established under irradiation in frequency modulation. Based on this expression, an electrical model of the intrinsic recombination velocity at the junction is presented. 展开更多
关键词 Silicon SOLAR Cell Frequency MODULATION INTRINSIC Recombination VELOCITY at the JUNCTION IRRADIATION Energy
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Ac Recombination Velocity in a Lamella Silicon Solar Cell 被引量:1
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作者 Matar Gueye hawa ly diallo +3 位作者 Attoumane Kosso Mamadou Moustapha Youssou Traore Ibrahima Diatta Gregoire Sissoko 《World Journal of Condensed Matter Physics》 2018年第4期185-196,共12页
The silicon solar cell with series-connected vertical junction is studied with different lamella widths—the expression of the ac recombination velocity of the excess minority carrier at the back surface is establishe... The silicon solar cell with series-connected vertical junction is studied with different lamella widths—the expression of the ac recombination velocity of the excess minority carrier at the back surface is established. Spectroscopy technique reveals dominated impact of the lamella widths of the base. 展开更多
关键词 Silicon Solar Cell-Vertical JUNCTION Series AC Recombination VELOCITY LAMELLA WIDTH
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Irradiation Energy Effect on a Silicon Solar Cell: Maximum Power Point Determination
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作者 Mamadou Lamine Ba hawa ly diallo +5 位作者 Hamet Yoro Ba Youssou Traore Ibrahima Diatta Marcel Sitor Diouf Mamadou Wade Gregoire Sissoko 《Journal of Modern Physics》 2018年第12期2141-2155,共15页
The aim of this study is to determinate the electrical parameters of a white biased silicon solar cell submitted to an irradiation energy of particles (protons, helium, electrons and heavy ions). A theoretical study o... The aim of this study is to determinate the electrical parameters of a white biased silicon solar cell submitted to an irradiation energy of particles (protons, helium, electrons and heavy ions). A theoretical study of the influence of irradiation energy on the photocurrent density, the photovoltage, the maximum power, as well as the maximum efficiency of the solar cell is presented through a resolution of the continuity equation relative to excess minority carrier. Then the expressions of the photocurrent density Jph, the photovoltage Vph, and the excess minority carrier recombination velocity at the back side Sb are established dependent of irradiation parameters &empty;p, Kl respectively irradiation flux and intensity. In this work, we propose a method for determining the recombination velocity of the excess minority carrier at the junction Sfmax corresponding to the maximum power point delivered by the photovoltaic generator under the influence of the irradiation. It is then obtained by calculating the derivative of the power with respect to the excess minority carrier recombination velocity Sf at the junction emitter-base. A transcendental equation solution is deduced as eigenvalue, leading to the junction recombination velocity of excess minority carrier and also yields the solar cell maximum conversion efficiency. 展开更多
关键词 SILICON SOLAR Cell IRRADIATION Electrical PARAMETERS MAXIMUM Power POINT
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