单色照明下磁场对径向结光伏电池电气参数影响的研究

Cyrile Constant Moyenga, B. Zouma, Ramatou Konaté, Aboubacar Savadogo, B. Korgo, Si´e Kam
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摘要

本研究对单色照明下受磁场作用的径向结光伏电池进行了理论研究。通过三维描述,我们建立了光电流密度、光电压和电功率随磁场变化的新分析表达式,并通过 Mathcad 15 软件进行模拟,提取了不同的曲线。通过这些表示方法,我们对这种光伏电池模型的运行进行了深入研究。从这项研究中可以看出,当光伏电池处于假定整个区域均匀的磁场中时,光电流密度、光电压和电功率等参数的振幅会强烈衰减。在 0.35 mT 的磁场和扩散长度下,短路电流降低了 59.75%,开路光电压降低了 9.32%。
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Study of the Impact of the Magnetic Field on the Electrical Parameters of the Radial Junction Photovoltaic Cell under Monochromatic Illumination
The present work is a theoretical study of the radial junction photovoltaic cell subjected to a magnetic field under monochromatic illumination. From a three-dimensional description, new analytical expressions of photocurrent density, photovoltage and electric power as a function of the magnetic field are established and by simulation on the Mathcad 15 software, we extracted the different curves. These representations allowed a thorough investigation of the operation of this model of a photovoltaic cell. It appears from this study that the amplitudes of parameters such as photocurrent density, photovoltage and electrical power are strongly attenuated when the photovoltaic cell is in the presence of a magnetic field assumed to be uniform over the entire region. For a magnetic field of 0.35 mT and a diffusion length, the short-circuit current decreased by 59.75% and the opencircuit photovoltage by 9.32%.
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