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Assessment of uncertainty in the numerical simulation of solar irradiance over inclined PV panels: New algorithms using measurements and modeling tools

机译:倾斜光伏面板上太阳辐射数值模拟中的不确定性评估:使用测量和建模工具的新算法

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摘要

Development of accurate transposition models to simulate plane-of-array (POA) irradiance from horizontal measurements or simulations is a complex process mainly because of the anisotropic distribution of diffuse solar radiation in the atmosphere. The limited availability of reliable POA measurements at large temporal and spatial scales leads to difficulties in the comprehensive evaluation of transposition models. This paper proposes new algorithms to assess the uncertainty of transposition models using both surface-based observations and modeling tools. We reviewed the analytical derivation of POA irradiance and the approximation of isotropic diffuse radiation that simplifies the computation. Two transposition models are evaluated against the computation by the rigorous analytical solution. We proposed a new algorithm to evaluate transposition models using the clear-sky measurements at the National Renewable Energy Laboratory's (NREL's) Solar Radiation Research Laboratory (SRRL) and a radiative transfer model that integrates diffuse radiances of various sky-viewing angles. We found that the radiative transfer model and a transposition model based on empirical regressions are superior to the isotropic models when compared to measurements. We further compared the radiative transfer model to the transposition models under an extensive range of idealized conditions. Our results suggest that the empirical transposition model has slightly higher cloudy-sky POA irradiance than the radiative transfer model, but performs better than the isotropic models under clear-sky conditions. Significantly smaller POA irradiances computed by the transposition models are observed when the photovoltaic; (PV) panel deviates from the azimuthal direction of the sun. The new algorithms developed in the current study have opened the door to a more comprehensive evaluation of transposition models for various atmospheric conditions and solar and PV orientations.
机译:开发精确的换位模型以通过水平测量或仿真来模拟阵列平面(POA)辐照是一个复杂的过程,这主要是因为大气中漫射太阳辐射的各向异性分布。在大的时间和空间尺度上,可靠的POA测量的可用性有限,导致在对换位模型进行综合评估时遇到困难。本文提出了使用基于表面的观测和建模工具来评估换位模型不确定性的新算法。我们回顾了POA辐照度的解析推导和各向同性扩散辐射的近似值,这些简化了计算过程。通过严格的分析解决方案针对计算对两个换位模型进行了评估。我们提出了一种新算法,可以使用国家可再生能源实验室(NREL)的太阳辐射研究实验室(SRRL)的晴空测量和整合了不同天空视角的漫射辐射的辐射传递模型来评估换位模型。我们发现,与测量值相比,基于经验回归的辐射传递模型和换位模型优于各向同性模型。我们进一步在广泛的理想条件下将辐射传递模型与换位模型进行了比较。我们的结果表明,经验性换位模型的多云天空POA辐照度比辐射传递模型略高,但在晴空条件下的性能优于各向同性模型。当使用光伏时,可以观察到由换位模型计算出的POA辐照度明显较小。 (PV)面板偏离太阳的方位角方向。当前研究中开发的新算法为各种大气条件以及太阳能和光伏方位的换位模型评估提供了更全面的机会。

著录项

  • 来源
    《Solar Energy》 |2018年第5期|55-64|共10页
  • 作者单位

    Natl Renewable Energy Lab, Power Syst Engn Ctr, 15013 Denver West Pkwy, Golden, CO 80401 USA;

    Natl Renewable Energy Lab, Power Syst Engn Ctr, 15013 Denver West Pkwy, Golden, CO 80401 USA;

    Natl Renewable Energy Lab, Power Syst Engn Ctr, 15013 Denver West Pkwy, Golden, CO 80401 USA;

  • 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

    Solar radiation; Radiative transfer; Model uncertainty; POA irradiance;

    机译:太阳辐射辐射传递模型不确定度POA辐照度;

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