Photovoltaic Spectral Responsivity and Efficiency under Different Aerosol Conditions

被引:1
|
作者
Kouklaki, Dimitra [1 ,2 ]
Kazadzis, Stelios [3 ,4 ]
Raptis, Ioannis-Panagiotis [1 ]
Papachristopoulou, Kyriakoula [1 ,2 ]
Fountoulakis, Ilias [2 ,5 ]
Eleftheratos, Kostas [1 ,6 ]
机构
[1] Natl & Kapodistrian Univ Athens, Dept Geol & Geoenvironm, Athens 15784, Greece
[2] Natl Observ Athens IAASARS NOA, Inst Astron Astrophys Space Applicat & Remote Sens, Athens 15236, Greece
[3] World Radiat Ctr PMOD WRC, Phys & Meteorol Observ Davos, CH-7260 Davos, Switzerland
[4] Natl Observ Athens, Inst Environm Res & Sustainable Dev, Athens 15236, Greece
[5] Acad Athens, Res Ctr Atmospher Phys & Climatol, Athens 10679, Greece
[6] Biomed Res Fdn Acad Athens, Athens 11527, Greece
关键词
spectral solar irradiance; solar energy; aerosols; PV spectral response; PV performance; RADIATIVE-TRANSFER CALCULATIONS; LIBRADTRAN SOFTWARE PACKAGE; OPTICAL DEPTH; PRECIPITABLE WATER; QUALITY-CONTROL; AIR-MASS; IRRADIANCE; PERFORMANCE; IMPACT; TECHNOLOGIES;
D O I
10.3390/en16186644
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
While solar power applications are growing rapidly worldwide, information about solar energy availability, its characteristics and the factors that affect it are essential. Among other parameters, a reference spectrum (ASTMG-173-03) is adopted, relying on Standard Test Conditions (STC), under which Photovoltaic (PV) devices are evaluated. However, these rigorously defined conditions can vary considerably from realistic environmental conditions. The objective of the present work is to assess the impact of the variability of atmospheric composition on the spectral distribution of the incident solar spectral irradiance (SSI) and, therefore, its implication on various PV materials performance. Ground-based measurements of global horizontal SSI have been conducted using a Precision Spectroradiometer (PSR) in the framework of the ASPIRE (Atmospheric parameters affecting SPectral solar IRradiance and solar Energy) project in Athens, Greece. The gathered data in combination with spectrally resolved radiative transfer under clear-sky conditions contributed to the investigation of the atmospheric variables that attenuate irradiance (e.g., aerosols). In addition, since PV modules' spectral absorptivity differs according to the semiconductor material used, the impact of the above-mentioned spectral features on PV performance has been investigated in order to estimate the spectral impact between the theoretical and outdoor conditions on the yield of different PV technologies. Overall, the results denote that smoke has a more significant effect than dust, while the effect on various technologies varies. The highest deviation compared to the STC was observed in the case of a-Si, reaching an absolute difference of 45% in the case of smoke particles in the atmosphere, while the maximum deviation between the different technologies reached approximately 7%.
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页数:18
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