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Spectroradiometer Intercomparison and Impact on Characterizing Photovoltaic Device Performance

机译:光谱仪相互作用和对光伏器件性能表征的影响

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Indoor and outdoor testing of photovoltaic (PV) device performance requires the use of solar simulators and natural solar radiation, respectively. This performance characterization requires accurate knowledge of spectral irradiance distribution that is incident on the devices. Spectroradiometers are used to measure the spectral distribution of solar simulators and solar radiation. On September 17, 2013, a global spectral irradiance intercomparison using spectroradiometers was organized by the Solar Radiation Research Laboratory (SRRL) at the National Renewable Energy Laboratory (NREL). 10 spectroradiometers from different laboratories participated in the intercomparison. The intercomparison was aimed to understand the performance of the different spectroradiometers and to achieve internal performance-based measurement and calibration quality-control checks undertaken by the laboratories. The Simple Model of the Atmospheric Radiative Transfer of Sunshine (SMARTS) model outputs were used in the outdoor intercomparison as an explanatory tool. The intent was to better understand how well the SMARTS-modeled spectra compare to various types of spectroradiometers considering that the model has a finer resolution than the instruments under scrutiny. Aside from spectral regions corresponding to sharp absorption bands and fast-changing sky conditions, the overall results of the comparison demonstrated less than 10% difference among the participating spectroradiometers and between the measured and SMARTS outputs. The results of this first intercomparison will help to decrease systematic inter-laboratory differences in the measurements of the outputs or efficiencies of PV devices and harmonize laboratory experimental procedures.
机译:的光生伏打(PV)器件的性能的室内和室外测试要求使用太阳模拟器和天然的太阳辐射,分别。这种性能特征,需要的光谱辐照度分布的准确认识入射的设备。光谱仪被用来测量太阳模拟器和太阳辐射的光谱分布。在2013年9月17日,一个全球性的光谱辐照度使用光谱仪比对是由太阳辐射研究实验室(SRRL)在国家可再生能源实验室(NREL)举办。来自不同实验室10个光谱仪参加了比对。的相互比较的目的了解不同光谱仪的性能,并实现由实验室内部进行的基于性能的测量和校准的质量控制检查。在室外相互比较,使用阳光(SMARTS)模型输出的大气辐射传输的简单模型作为解释工具。这样做的目的是为了更好地了解SMARTS,模型化的光谱如何比较不同类型的考虑,该模型具有更精细的分辨率比在审查仪器分光辐射。除了对应于尖锐的吸收带和快速变化的天气条件下的光谱区域中,比较的总体结果表明参与光谱辐射中和所测量的和SMARTS输出之间小于10%的差异。这第一个比对的结果将有助于减少在输出或PV装置和统一的实验室实验程序的效率的测量系统的实验室间的差异。

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