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首页> 外文期刊>Journal of Modern Physics >A Junction Electric Field Determination of a Bifacial Silicon Solar Cell under a Constant Magnetic Field Effect by Using the Photoconductivity Method
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A Junction Electric Field Determination of a Bifacial Silicon Solar Cell under a Constant Magnetic Field Effect by Using the Photoconductivity Method

机译:利用光电电导光法在恒定磁场效果下的连接电场确定双面硅太阳能电池

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In this work, a theory based on the steady photoconductivity method, of a bifacial silicon solar cell under polychromatic illumination and a magnetic field effect, is presented. The resolution of the continuity equation in the base of the solar cell, allowed us to establish the expression of the minority carriers’ density from which the photoconductivity, the photocurrent density, the photovoltage and the solar output power as function of the junction recombination velocity and the applied magnetic field, were deduced. From I-V and P-V characteristics of the solar cell, optimal photovoltage and optimal photocurrent obtained at the maximum power point corresponding to a given operating point which is correlated to an optimal junction recombination velocity, were determined according to the magnetic field. By means of the relation between the photocurrent density and the photoconductivity, the junction electric field has been determined at a given optimal junction recombination velocity.
机译:在这项工作中,提出了一种基于多色照明和磁场效应下的基于稳态光电导性方法的理论,以及磁场效应。太阳能电池底部的连续性方程的分辨率允许我们建立少数载体密度的表达,从该载体密度与结复合速度的功能和太阳能电压和太阳能输出功率相比的少数载体密度。推导出施加的磁场。根据太阳能电池的I-V和P-V特性,根据磁场确定与对应于与最佳结复合速度相关的给定操作点的最大功率点处获得的最佳光伏和最佳光电流。借助于光电性密度与光电导性之间的关系,在给定的最佳结复合速度下已经确定了结电场。

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