Evaluation of different indicators for representing solar spectral variation

A. Louwen, A. D. de Waal, W. V. van Sark
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引用次数: 10

Abstract

In studies analyzing the performance of photovoltaic (PV) modules, average photon energy (APE) is often used as an indicator for the effect of solar spectral variation on PV module performance, as it is said to accurately distinguish individual spectra. Especially for a-Si devices, there is a strong correlation between APE and performance. However, there can be significant variation in spectra measured at specific APE values. In this study we analyze the variation of spectra at a range of APE values, and also compare APE as an indicator of spectra to other spectral indicators, namely Blue Fraction (BF), Useful Fraction (UF), Airmass (AM) and Spectral Mismatch Factor (MMF). We compare the indicators by binning spectra at different values of each parameter, and calculating the Root-Mean-Square-Deviation (RMSD) of all spectra in the bin to the mean spectrum in the bin. Subsequently, we compare these calculated results between the different parameters Our results indicate that APE was found the best indicator of spectral variation, with the lowest mean RMSD over the whole range of measured data. However, BF is an almost equally good indicator, and UF and MMF also show a low mean RMSD. Airmass was found to be a quite poor indicator of spectral variation.
评价代表太阳光谱变化的不同指标
在分析光伏组件性能的研究中,通常使用平均光子能量(APE)作为太阳光谱变化对光伏组件性能影响的指标,据说APE可以准确区分单个光谱。特别是对于a- si器件,APE与性能之间存在很强的相关性。然而,在特定的APE值下测量的光谱可能有显著的变化。在本研究中,我们分析了光谱在APE值范围内的变化,并将APE作为光谱指标与其他光谱指标,即蓝色分数(BF)、有用分数(UF)、空气质量(AM)和光谱失配系数(MMF)进行了比较。我们通过对每个参数不同值下的光谱进行分组,并计算bin中所有光谱与bin中平均光谱的均方根偏差(RMSD)来比较指标。随后,我们将这些计算结果在不同参数之间进行比较,结果表明APE是光谱变化的最佳指标,在整个测量数据范围内平均RMSD最低。然而,BF是一个几乎同样好的指标,UF和MMF也显示出较低的平均RMSD。气团被发现是光谱变化的一个很差的指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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