Modelling and Estimation of The Optimum Tilt Angle of Photovoltaic Systems, Case Study: Libya

A. Teyabeen, F. Mohamed
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Abstract

The most important parameter for designing solar photovoltaic (PV) systems is the tilt angle of PV panels with horizontal surface. It determines the amount of radiation incident on PV panels surfaces, thus it is required for an economic evaluation of solar PV systems. For this reason, this study aims to estimate the optimum tilt angle of solar PV panels to exploit the maximum daily solar radiation on the inclined surface. The analysis was achieved based on measured data recorded in four cities of Libya. The optimum tilt angle was determined by changing the angle of surface from 0° up to 90° with the 1° resolution and searching for the maximum value of the corresponding daily total solar radiation. In addition, Six empirical models were established to estimate the optimum tilt angle of PV panels. Their empirical coefficients were determined using non-linear regression technique. The models accuracies were evaluated using statistical criteria such as mean bias error, MBE, root mean square error, RMSE, and correlation coefficient, R. A combined statistical indicator, CSI, has been developed to assess and rank the performance of models. The presented results showed that the optimum tilt angle in the four studied sites varied from 0° to 59° throughout the year, it increased during the winter and decreased during the summer. The results also showed that both third-order polynomial and Fourier model presented the best efficiency in estimating optimum tilt angle with R = 0.9943.
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光伏系统最佳倾斜角的建模与估计,案例研究:利比亚
太阳能光伏系统设计中最重要的参数是光伏板的水平面倾斜角。它决定了入射到光伏板表面的辐射量,因此需要对太阳能光伏系统进行经济评估。因此,本研究旨在估算太阳能光伏板的最佳倾斜角度,以利用倾斜表面的最大日太阳辐射。该分析是根据利比亚四个城市记录的测量数据完成的。在1°分辨率下,将地表倾角从0°变化到90°,寻找对应的日总辐射最大值,确定最佳倾角。此外,还建立了6个经验模型来估计光伏板的最佳倾斜角度。利用非线性回归技术确定了它们的经验系数。采用平均偏倚误差、MBE、均方根误差、RMSE和相关系数r等统计标准对模型的准确性进行评估,并开发了一个综合统计指标CSI来评估模型的性能并对其进行排名。结果表明:4个研究点的最佳倾斜角度在0 ~ 59°之间,冬季增大,夏季减小;结果还表明,三阶多项式和傅里叶模型对最佳倾斜角的估计效果最好,R = 0.9943。
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