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Linking spectral, thermal and weather effects to predict location-specific deviation from the rated power of a PV panel

机译:链接光谱,热和天气效应,以预测与PV面板的额定功率的定位特定偏差

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Solar-PV is the most mature technology for the solar energy utilization. The design of such PV-based systems are done in terms of the rated power of the panels while the rating is determined at the standard test condition of a specified temperature, irradiance level and for the standard AM1.5G solar spectrum. However, such rated output is never achieved as the actual operating conditions vary widely from the standard one. Hence, it is critical to estimate the actual power output under certain operating conditions in a given location for a proper design. Here, we provide a comprehensive method for estimating the actual power output which is applied to a particular location (Kanpur, India). Three major factors are computed which cause deviation of the power output from the rated value: spectral factor, temperature factor and irradiance factor. The combined effect is expressed through power factor which is observed to be dominated by the irradiance factor. It is observed that the actual power is significantly less from 40% to 75% of the rated value for the whole year which needs to be accounted for during the sizing-decision. The current study applies the estimation method on five commonly used PV materials and identifies amorphous silicon panel to be best suited for Kanpur for the prevailing condition in spring and summer seasons because it provides the highest output for the same rated power. The case study of Kanpur clearly demonstrates the effectiveness of the present method and its usefulness in the design process.
机译:Solar-PV是太阳能利用的最成熟的技术。这种基于PV的系统的设计是根据面板的额定功率完成的,而评级在指定温度,辐照度水平和标准AM1.5G太阳频谱的标准测试条件下确定。然而,由于实际操作条件从标准差异很大,因此从未实现这种额定输出。因此,估计某些操作条件下的实际功率输出至关重要,以获得适当的设计。在这里,我们提供了一种估计应用于特定位置的实际功率输出的综合方法(Kanpur,印度)。计算了三个主要因素,这导致额定值的功率输出偏差:光谱因子,温度因数和辐照度系数。组合效果通过观察到由辐照因子支配的功率因数表示。据指出,实际功率从额定值的40%到75%的额定值,在规定决定期间需要考虑。目前的研究适用于五种常用的PV材料上的估计方法,并识别非晶硅面板,以便在春季和夏季季节中最适合Kanpur,因为它为相同额定功率提供了最高输出。 Kanpur的案例研究清楚地证明了本方法的有效性及其在设计过程中的用途。

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