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Spectral response measurements of multijunction solar cells with low shunt resistance and breakdown voltages

机译:低分流电阻和击穿电压的多结太阳能电池的光谱响应测量

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Abstract Spectral response measurements of germanium-based triple-junction solar cells were performed under a variety of light and voltage bias conditions. Two of the three junctions exhibited voltage and light bias-dependent artifacts in their measured responses, complicating the true spectral response of these junctions. To obtain more insight into the observed phenomena, a set of current-voltage measurement combinations were also performed on the solar cells under identical illumination conditions, and the data were used in the context of a diode-based analytical model to calculate and predict the spectral response behavior of each junction as a function of voltage. The analysis revealed that both low shunt resistance and low breakdown voltages in two of the three junctions influenced the measured quantum efficiency of all three junctions. The data and the modeling suggest that combination of current-voltage measurements under various light bias sources can reveal important information about the spectral response behavior in multijunction solar cells.
机译:摘要在多种光和电压偏置条件下,进行了锗基三结太阳能电池的光谱响应测量。三个结中的两个在其测得的响应中表现出电压和光偏置相关的伪影,这使这些结的真实光谱响应变得复杂。为了对观察到的现象有更多的了解,还在相同的照明条件下对太阳能电池进行了一组电流-电压测量组合,并将这些数据用于基于二极管的分析模型中,以计算和预测光谱每个结的响应行为与电压的关系。分析表明,三个结中两个结的低分流电阻和低击穿电压都会影响所有三个结的实测量子效率。数据和建模表明,在各种光偏置源下进行电流-电压测量的组合可以揭示有关多结太阳能电池中光谱响应行为的重要信息。

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