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Theoretical Study of Proton Radiation Influence on the Performance of a Polycrystalline Silicon Solar Cell

机译:质子辐射对多晶硅太阳能电池性能的理论研究

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The aim of this work is to study the behaviour of a silicon solar cell under the irradiation of different fluences of high-energy proton radiation (10?MeV) and under constant multispectral illumination. Many theoretical et experimental studies of the effect of irradiation (proton, gamma, electron, etc.) on solar cells have been carried out. These studies point out the effect of irradiation on the behaviour of the solar cell electrical parameters but do not explain the causes of these effects. In our study, we explain fundamentally the causes of the effects of the irradiation on the solar cells. Taking into account the empirical formula of diffusion length under the effect of high-energy particle irradiation, we established new expressions of continuity equation, photocurrent density, photovoltage, and dynamic junction velocity. Based on these equations, we studied the behaviour of some electronic and electrical parameters under proton radiation. Theoretical results showed that the defects created by the irradiation change the carrier distribution and the carrier dynamic in the bulk of the base and then influence the solar cell electrical parameters (short-circuit current, open-circuit voltage, conversion efficiency). It appears also in this study that, at low fluence, junction dynamic velocity decreases due to the presence of tunnel defects. Obtained results could lead to improve the quality of the junction of a silicon solar cell.
机译:这项工作的目的是研究硅太阳能电池在高能质子辐射(10?MEV)的不同流量和恒定多光谱照射下的照射下的行为。已经进行了许多理论等实验研究,对太阳能电池的辐射(质子,γ,电子等)的影响进行了实验研究。这些研究指出了照射对太阳能电池电气参数行为的影响,但不解释这些效果的原因。在我们的研究中,我们从根本上解释了辐射对太阳能电池的影响的原因。考虑到在高能粒子照射的效果下扩散长度的经验公式,我们建立了新的连续性方程,光电密度,光伏和动态结速度的新表达。基于这些等式,我们研究了质子辐射下一些电子和电气参数的行为。理论结果表明,由辐射产生的缺陷改变了载体分布和载波动态在大部分基地中,然后影响太阳能电池电气参数(短路电流,开路电压,转换效率)。在这项研究中,它还出现,在低气量下,由于存在隧道缺陷,接合动态速度降低。获得的结果可能导致改善硅太阳能电池的交界处的质量。

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