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Utilization of spectral mismatch correction factor for estimation of precise outdoor performance under different average photon energies

机译:利用光谱失配校正因子估算不同平均光子能量下的精确户外性能

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Outdoor performance of test photovoltaic (PV) modules, especially short circuit current (I-SC), is corrected to standard test conditions (STC) utilizing sc-Si PV module as PV module irradiance sensor (PVMS). In this contribution, average photon energy (APE) can be used as an index of solar spectral irradiance. The CdTe PV module was used as a test PV module since its spectrum response is significantly different from that of the PVMS to investigate an effect of spectral mismatch. The median of the error between I-SC corrected to STC (ISC-correction) of CdTe PV module using PVMS and its I-SC under STC is the highest at 2.64% under APE from 1.75 to 2.15 eV because of the spectral mismatch between PVMS and test PV module. On the other hand, the median of the error is obviously reduced to 0.89%, when ISC-correction was estimated using PVMS and spectral mismatch correction factor under APE from 1.75 to 2.15 eV. The lowest median of 0.54% for the error is furthermore realized under APE in a range of 1.83-1.95 eV, where spectral irradiance mostly indexed by the APE range from 1.83 to 1.95 eV (83% of all spectral irradiance) is frequently occurred at the outdoor installation site. (C) 2020 Elsevier Ltd. All rights reserved.
机译:测试光伏(PV)模块的户外性能,特别是短路电流(I-SC)校正为使用SC-Si PV模块作为PV模块辐照度传感器(PVMS)的标准测试条件(STC)。在该贡献中,平均光子能量(APE)可用作太阳光谱辐照度的指标。 CDTE PV模块用作测试PV模块,因为其频谱响应与PVM的谱响应显着不同,以研究光谱失配的效果。在STC下使用PVMS及其I-SC校正CDTE PV模块的STC(ISC校正)的误差的中位数,其I-SC在1.75至2.15 EV下的2.64%,因为PVM之间的光谱不匹配并测试PV模块。另一方面,当使用PVMS和Spectral错配校正因子在1.75到2.15eV下估计ISC校正时,误差的中位数明显降至0.89%。此外,误差下的最低位数为0.54%,在APE下实现了1.83-1.95eV的范围内,其中散射射频大部分由1.83到1.95eV(占所有光谱辐照度的83%)经常被索引户外安装现场。 (c)2020 elestvier有限公司保留所有权利。

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