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Accurate Output Forecasting Method for Various Photovoltaic Modules Considering Incident Angle and Spectral Change Owing to Atmospheric Parameters and Cloud Conditions

机译:考虑入射角的各种光伏模块的准确输出预测方法,据考虑发生的角度和云条件和云条件

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摘要

Because semiconductors absorb wavelengths dependent on the light absorption coefficient, photovoltaic (PV) energy output is affected by the solar spectrum. Therefore, it is necessary to consider the solar spectrum for highly accurate PV output estimation. Bird’s model has been used as a general spectral model. However, atmospheric parameters such as aerosol optical depth and precipitable water have a constant value in the model that only applies to clear days. In this study, atmospheric parameters were extracted using the Bird’s spectrum model from the measured global spectrum and the seasonal fluctuation of atmospheric parameters was examined. We propose an overcast spectrum model and calculate the all-weather solar spectrum from clear to overcast sky through linear combination. Three types of PV modules (fixed Si, two-axis tracking Si, and fixed InGaP/GaAs/InGaAs triple-junction solar cells) were installed at the University of Miyazaki. The estimated performance ratio (PR), which takes into account incident angle and spectral variations, was consistent with the measured PR. Finally, the energy yield of various PVs installed across Japan was successfully estimated.
机译:因为半导体吸收取决于光吸收系数的波长,所以光伏(PV)能量输出受太阳光谱的影响。因此,有必要考虑用于高精度的PV输出估计的太阳频谱。鸟的模型已被用作一般光谱模型。然而,大气参数如气溶胶光学深度和可沉淀的水在模型中具有恒定的值,仅适用于晴天。在该研究中,使用鸟的频谱模型从测量的全局频谱提取大气参数,并检查大气参数的季节性波动。我们提出了一个阴沉的频谱模型,并通过线性组合计算了从清除到阴天天空的全天候太阳频谱。 Miyazaki大学安装了三种类型的光伏模块(固定Si,双轴跟踪Si和固定的Ingap / GaAs / IngaAs三架太阳能电池)。考虑到入射角和光谱变化的估计性能比(PR)与测量的PR一致。最后,成功地估计了日本各种PVS的能源产量。

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