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Research of silicon solar cells' performance after being irradiated by high power laser

机译:高功率激光照射后硅太阳能电池性能研究

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Compared with traditional methods of energy supply, there is a great possibility to get a more remarkable enhancement of conversion efficiency for laser power (of proper wavelength and intensity) beaming to silicon solar cells. However, it should be noticed that cells may be damaged by high power laser. Based on the background, this essay explores high-power-laser's possible damage to silicon solar cells by analyzing Ⅳ curves (obtained by Ⅳ tester) and minority-carrier lifetime (measured by open-circuit-voltage-decay method). Research shows that, for 30s irradiation, minority-carrier lifetime decreases to some extent when irradiated by laser of over 5.5W/cm~2 and the higher laser power density, the more degradation. Similarly, Ⅳ curves see a downward trend under laser of over 5.5W/cm~2. In addition, there is a roughly linear relationship between lifetime and the decrease amount of short circuit current. Moreover, the degradation degree has a close relation with the maximum temperature. The prolonged illumination would not bring about more serious damage if one cell had already reached an equilibrium temperature.
机译:与传统的能量供应方法相比,有可能获得更显着的改进激光功率(适当波长和强度)光束到硅太阳能电池的转换效率。然而,应该注意到,电池可能被高功率激光损坏。基于背景,本文探讨了通过分析ⅳ曲线(由测试仪获得)和少数载体寿命(通过开路 - 电压衰减方法测量)对硅太阳能电池可能损坏的高功率激光激光器可能损坏。研究表明,对于30S照射,少数载体寿命在通过超过5.5W / cm〜2的激光照射和较高的激光功率密度的激光时,少数载体寿命减小到一定程度。同样,ⅳ曲线在5.5W / cm〜2的激光下看到下降趋势。另外,寿命之间存在大致线性关系和短路电流的降低量。此外,降解程度与最高温度具有密切的关系。如果一个细胞已经达到平衡温度,则延长的照明不会产生更严重的损坏。

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