Study of Temperature Coefficients for Parameters of Photovoltaic Cells

光伏系统 单晶硅 辐照度 材料科学 温度系数 光伏 电压 光电子学 多晶硅 非晶硅 开路电压 晶体硅 太阳能电池 太阳辐照度 温度测量 光学 电气工程 纳米技术 物理 热力学 大气科学 复合材料 工程类 图层(电子) 薄膜晶体管
作者
Daniel Tudor Cotfas,Petru Adrian Cotfas,Octavian Machidon
出处
期刊:International Journal of Photoenergy [Hindawi Publishing Corporation]
卷期号:2018: 1-12 被引量:128
标识
DOI:10.1155/2018/5945602
摘要

The temperature is one of the most important factors which affect the performance of the photovoltaic cells and panels along with the irradiance. The current voltage characteristics, I-V , are measured at different temperatures from 25°C to 87°C and at different illumination levels from 400 to 1000 W/m 2 , because there are locations where the upper limit of the photovoltaic cells working temperature exceeds 80°C. This study reports the influence of the temperature and the irradiance on the important parameters of four commercial photovoltaic cell types: monocrystalline silicon—mSi, polycrystalline silicon—pSi, amorphous silicon—aSi, and multijunction InGaP/InGaAs/Ge (Emcore). The absolute and normalized temperature coefficients are determined and compared with their values from the related literature. The variation of the absolute temperature coefficient function of the irradiance and its significance to accurately determine the important parameters of the photovoltaic cells are also presented. The analysis is made on different types of photovoltaics cells in order to understand the effects of technology on temperature coefficients. The comparison between the open-circuit voltage and short-circuit current was also performed, calculated using the temperature coefficients, determined, and measured, in various conditions. The measurements are realized using the SolarLab system, and the photovoltaic cell parameters are determined and compared using the LabVIEW software created for SolarLab system.

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