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Measurement Uncertainties in the Calibration of Multi-Junction Solar Cells using Different Sun Simulators and Reference Devices

机译:使用不同的太阳模拟器和参考设备校准多结太阳能电池时的测量不确定度

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A dual-junction solar cell (Perovskite/Silicon) is used in an investigation of measurement uncertainty under standard test conditions. A method traceable to international standards is presented that allows to evaluate uncertainties in the calibration of multi-junction photovoltaic devices. In view of new tandem solar cell concepts the determination of measurement uncertainty for multi-junction solar cells becomes increasingly important. Little has been published so far on this topic. The spectral mismatch factor matrix is introduced to evaluate the influence of different simulator spectra and reference devices on the overall uncertainty of the measurement. For this purpose a Monte Carlo method including wavelength correlations is applied for realistic simulation of the measurement. The uncertainty budget of the calibration of the sun simulator is discussed for uncertainties of the devicés short-circuit current, including effects by luminescent coupling and shunted subcells.
机译:双结太阳能电池(钙钛矿/硅)用于研究标准测试条件下的测量不确定度。提出了一种可追溯到国际标准的方法,该方法可以评估多结光伏器件校准中的不确定性。鉴于新的串联太阳能电池概念,确定多结太阳能电池的测量不确定度变得越来越重要。到目前为止,有关该主题的文献很少。引入光谱失配因子矩阵来评估不同模拟器光谱和参考设备对测量总体不确定度的影响。为此目的,将包括波长相关性的蒙特卡罗方法用于测量的真实模拟。讨论了太阳模拟器校准的不确定性预算,以确定设备短路电流的不确定性,包括发光耦合和并联子电池的影响。

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