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An investigation on dye-sensitized solar cell performance influenced by radiant intensity and illuminated area in concentrating photovoltaic system

机译:光伏系统辐射强度和照明区域影响染料敏感太阳能电池性能的研究

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The dye-sensitized solar cell performances influenced by radiant intensity and illuminated area in concentrating photovoltaic system are investigated experimentally and discussed theoretically. The results show that, under the same irradiated cells area, the short-circuit current is linearly increasing with the radiant intensity and the open-circuit voltage follows a logarithmic function of the radiant intensity. And, it is turned out that the short-circuit current and open-circuit voltage are obviously enhanced by increasing the illuminated cells surface area at the same radiant intensity. However, that growth trends will decline with an increase of the illuminated area. The reason is more defects involved in the process of increasing illumination area. All results can be interpreted using an equivalent circuit of a single diode model. A good agreement can be observed from the fitting curves. It is of great significance for current photovoltaic research.
机译:通过实验研究了由浓缩光伏系统的辐射强度和照射区域影响的染料敏化太阳能电池性能,并从理论上进行了讨论。结果表明,在相同的照射电池区域下,随着辐射强度和开路电压沿辐射强度的对数函数沿着辐射强度的对数函数线性增加。结果证明,通过增加相同辐射强度的照明电池表面区域显然提高了短路电流和开路电压。但是,随着照明区域的增加,增长趋势将下降。越来越多的缺陷是增加照明区域的过程。可以使用单二极管模型的等效电路来解释所有结果。可以从拟合曲线观察到良好的一致性。目前的光伏研究至关重要。

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