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Estimating PV Module Performance over Large Geographical Regions: The Role of Irradiance, Air Temperature, Wind Speed and Solar Spectrum

机译:在大地理区域内估算光伏组件的性能:辐照度,气温,风速和太阳光谱的作用

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We present a study of how photovoltaic (PV) module performance varies on continental scale. Mathematical models have been used to take into account shallow-angle reflectivity, spectral sensitivity, dependence of module efficiency on irradiance and module temperature as well as how the module temperature depends on irradiance, ambient temperature and wind speed. Spectrally resolved irradiance data retrieved from satellite images are combined with temperature and wind speed data from global computational weather forecast data to produce maps of PV performance for Eurasia and Africa. Results show that module reflectivity causes a fairly small drop of 2%–4% in PV performance. Spectral effects may modify the performance by up to ±6%, depending on location and module type. The strongest effect is seen in the dependence on irradiance and module temperature, which may range from −20% to +5% at different locations.
机译:我们目前对光伏(PV)模块性能在大陆范围内如何变化的研究。已经使用数学模型来考虑浅角反射率,光谱灵敏度,组件效率对辐照度和组件温度的依赖性以及组件温度如何取决于辐照度,环境温度和风速。从卫星图像获取的光谱解析辐照度数据与来自全球计算天气预报数据的温度和风速数据相结合,以生成欧亚大陆和非洲的PV性能图。结果表明,模块反射率会导致PV性能下降2%–4%。根据位置和模块类型的不同,光谱效应可能会使性能最多降低±6%。在对辐照度和组件温度的依赖性上,可以看到最强的效果,在不同位置,辐照度和组件温度的范围可能从-20%到+ 5%。

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