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Back Illuminated N/P/P&sup&+&/sup& Bifacial Silicon Solar Cell under Modulated Short-Wavelength: Determination of Base Optimum Thickness

机译:背部照明N / P / P& LT; SUP& +& l; / sup& 在调制短波长的双脉灰太阳能电池:基础最佳厚度的测定

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A bifacial silicon solar cell under monochromatic illumination in frequency modulation by the rear side is being studied for the optimization of base thickness. The density of photogenerated carriers in the base is obtained by resolution of the continuity equation, with the help of boundary conditions at the junction surface (n~( + ) /p) and the rear face (p/p ~( + ) ) of the base. For a short wavelength corresponding to a high absorption coefficient, the AC photocurrent density is calculated and represented according to the excess minority carrier’s recombination velocity at the junction, for different modulation frequency values. The expression of the AC recombination velocity of excess minority carriers at the rear surface of the base of the solar cell is then deduced, depending on both, the absorption coefficient of the silicon material and the thickness of the base. Compared to the intrinsic AC recombination velocity, the optimal thickness is extracted and modeled in a mathematical relationship, as a decreasing function of the modulated frequency of back illumination. Thus under these operating conditions , a maximum short-circuit photocurrent is obtained and a low - cost bifacial solar cell can be achieved by reducing material (Si) to elaborate the base thickness.
机译:研究了后侧的频率调制中的单色照射下的双层硅太阳能电池,用于优化基础厚度。碱基中的光生载体密度是通过在结表面(n〜(+)/ p)和后表面(p / p〜(+))的边界条件下的边界条件的基地。对于对应于高吸收系数的短波长,计算AC光电流密度,根据结差的少数载波的重组速度,用于不同的调制频率值。然后推导出太阳能电池基部的后表面处的过量少数载流子的交流重组速度的表达,这取决于硅材料的吸收系数和基部的厚度。与内在交流重组速度相比,以数学关系提取和建模的最佳厚度,作为后照明的调制频率的降低函数。因此,在这些操作条件下,获得最大短路光电流,并且通过还原材料(Si)来实现低成本的双因子太阳能电池以精确地制定基础厚度。

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