Performance Analysis of Clear Sky Global Horizontal Irradiance Models: Simple Models Adapted for Local Conditions

N. Kwarikunda, Z. Chiguvare
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引用次数: 3

Abstract

Evaluation of the maximum solar energy potential of a given area for possible deployment of solar energy technologies requires assessment of clear sky solar irradiance for the region under consideration. Such localized assessment is critical for optimal sizing of the technology to be deployed in order to realize the anticipated output. As the measurements are not always available where they are needed, models may be used to estimate them. In this study, three different models were adapted for the geographical location of the area under study and used to estimate clear sky global horizontal irradiance (GHI) at three locations in the subtropical desert climate of Namibia. The three models, selected on the basis of input requirements, were used to compute clear sky GHI at Kokerboom, Arandis, and Auas. The models were validated and evaluated for performance using irradiance data measured at each of the sites for a period of three years by computing statistical parameters such as mean bias error (MBE), root mean square error (RMSE), and the coefficient of determination (R2), normalized MBE, and normalized RMSE. Comparative results between modelled and measured data showed that the models fit well the measured data, with normalized root mean square error values in the range 4–8%, while the R2 value was above 98% for the three models. The adapted models can thus be used to compute clear sky GHI at these study areas as well as in other regions with similar climatic conditions.
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晴空全球水平辐照度模型的性能分析:适合当地条件的简单模型
为了评估某一地区可能部署太阳能技术的最大太阳能潜力,需要评估该地区的晴朗天空太阳辐照度。这种本地化评估对于优化将要部署的技术规模以实现预期产出至关重要。由于测量在需要的地方并不总是可用的,因此可以使用模型来估计它们。在这项研究中,三个不同的模型适用于研究区域的地理位置,并用于估计纳米比亚亚热带沙漠气候中三个位置的晴朗天空全球水平辐照度(GHI)。根据输入要求选择的三个模型用于计算Kokerboom、Arandis和Auas的晴朗天空GHI。通过计算统计参数,如平均偏误(MBE)、均方根误差(RMSE)和决定系数(R2)、归一化MBE和归一化RMSE,使用在每个地点测量的三年辐照度数据对模型进行了性能验证和评估。建模数据和测量数据之间的比较结果表明,模型与测量数据拟合良好,归一化均方根误差值在4-8%范围内,而三个模型的R2值均在98%以上。因此,调整后的模型可用于计算这些研究区域以及气候条件相似的其他区域的晴朗天空GHI。
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审稿时长
21 weeks
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