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Errors in PV power modelling due to the lack of spectral and angular details of solar irradiance inputs

机译:由于缺乏太阳辐照输入的光谱和角度细节,导致PV功率建模错误

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摘要

Photovoltaic (PV) modules are sensitive to the spectral distribution of solar irradiance. Although numerical weather prediction (NWP) models compute irradiance in several spectral bands, only broadband quantities are provided in the standard outputs used for PV forecasts. This study investigates how this lack of information impacts PV power estimation. A physical PV model is first designed that accounts for the spectral distribution of irradiance and the spectral response of the panels. This model is evaluated using measurements performed at Site Instrumental de Recherche par Teledetection Atrnospherique (SIRTA), Palaiseau, France. The mean relative difference between simulated and measured PV power for a monocrystalline silicon module of 250 W nominal power is -0.9%, and the mean bias is -2.0 W. This model is then used to investigate the impact of solar zenith angle and clouds on the performance of PV modules. PV performance can increase in cloudy conditions by 5% through spectral filtering of near-infrared irradiance, and by 18% when only the useful irradiance is considered to compute performance. This spectral effects is not captured by the PV model when only broadband irradiances are used. In such case errors up to 15% are obtained in simulated PV power compared to using a state-of-the-art NWP model providing irradiance in 14 spectral bands. More generally, broadband global horizontal irradiance appears insufficient for accurate PV power modelling, highlighting the added value of spectrally-and-angularly-refined irradiances. This stresses that PV models should use more detailed irradiance inputs, which could be easily achieved by exploiting internal variables of NWP models.
机译:光伏(PV)模块对太阳辐照度的光谱分布敏感。尽管数值天气预报(NWP)模型可在几个光谱带中计算辐照度,但在用于PV预报的标准输出中仅提供了宽带量。这项研究调查了这种信息的缺乏如何影响光伏发电估计。首先设计一个物理PV模型,该模型考虑了辐照度的光谱分布和面板的光谱响应。使用在法国帕莱索的Teledetection Atrnospherique(SIRTA)的站点仪器进行的测量来评估该模型。 250 W标称功率的单晶硅模块的模拟和测量PV功率之间的平均相对差为-0.9%,平均偏差为-2.0W。然后,该模型用于研究太阳天顶角和云对光伏组件的性能。通过在多云条件下对近红外辐照度进行光谱过滤,PV性能可以提高5%,而当仅考虑有用辐照度来计算性能时,PV性能可以提高18%。当仅使用宽带辐照度时,PV模型无法捕获此光谱效应。在这种情况下,与使用提供14个光谱带辐照度的最新NWP模型相比,在模拟PV功率中可获得高达15%的误差。更普遍的是,宽带全球水平辐照度似乎不足以进行精确的PV功率建模,从而突出了光谱和角度精细辐照度的附加值。这强调PV模型应使用更详细的辐照度输入,这可以通过利用NWP模型的内部变量轻松实现。

著录项

  • 来源
    《Solar Energy》 |2020年第2期|266-278|共13页
  • 作者

  • 作者单位

    Univ Toulouse CNRM CNRS Meteofrance 42 Ave Gaspard Coriolis F-31100 Toulouse France;

    Sorbonne Univ PSL Res Univ Univ Paris Saclay LMD IPSL Ecole Polytech ENS CNRS Route Saclay F-91128 Palaiseau France;

    Univ Paris Sud 11 UPMC CNRS GeePs Lab Genie Elect & Elect Paris SUPELEC 11 Rue Joliot Curie F-91192 Gif Sur Yvette France;

    CNRS LIMSI Rue John von Neumann F-91405 Orsay France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PV power; PV module performance; Cloud-radiation interactions; Spectral irradiance; Numerical weather prediction;

    机译:光伏发电光伏组件性能;云辐射相互作用;光谱辐照度数值天气预报;

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