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Uncertainty Estimation of Spectral Matching Ratio Based Power Rating of CPV Modules

机译:基于CPV模块的光谱匹配比的不确定性估计

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The concentrator standard conditions are defined in the standard IEC 62670-1. Those conditions demand for spectral conditions equivalent to AM1.5d as described in IEC 60904-3. The power output of CPV modules has to be rated at the concentrator standard conditions and thus at AM1.5d spectral irradiance. According to IEC standard 62670-3 the prevailing spectral conditions have to be characterized using spectral matching ratios (SMR). The SMR values have to be within three percent of unity to allow for standardized power ratings. The SMR values are calculated from component cell sensor readings. The most commonly used component cells are based on lattice-matched triple-junction cell structures with bandgaps of 1.9, 1.4 and 0.7 eV. In this work, the usage of these component cells for power ratings on CPV modules equipped with other types of multi-junction cells is investigated. This investigation is based on representative power outputs of CPV modules. These power outputs were calculated using i) the spectral irradiance modeling software SMARTS2, ii) measured external quantum efficiencies and iii) the two-diode model. The outcome of this investigation is an estimation for the measurement uncertainty of rated CPV module power output when using the SMR filtering approach recommended in IEC 62670-3.
机译:集中器标准条件是在标准IEC 62670-1中定义的。那些条件要求与IEC 60904-3中所述相当于AM1.5D的光谱条件。 CPV模块的功率输出必须在集中器标准条件下额定值,因此在AM1.5D光谱辐照度下额定值。根据IEC标准的62670-3必须使用光谱匹配比(SMR)来表征现行光谱条件。 SMR值必须在1%的统一范围内,以允许标准化的电力额定值。 SMR值由组件单元传感器读数计算。最常用的组分细胞基于具有1.9,1.4和0.7eV的带隙的晶格匹配的三孔电池结构。在这项工作中,研究了这些组件单元对配备其他类型多结细胞的CPV模块的电力额定值的使用。本研究基于CPV模块的代表性电源输出。使用i)使用i)使用i)光谱辐照规模建模软件Smarts2,ii)测量的外部量子效率和III)两二极管模型来计算这些功率输出。本研究的结果是在IEC 62670-3中推荐的SMR过滤方法时,额定CPV模块电源输出的测量不确定度的估计。

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