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Optimal tilt angle determination of photovoltaic panels and comparing of their mathematical model predictions to experimental data in Kerman

机译:光伏面板的最佳倾斜角确定并将其数学模型预测与克尔曼实验数据进行比较

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Performance of a solar radiation conversion system is affected by its tilt angle with the horizontal plane, thus photovoltaic array needs to be tilted at the correct angle to maximize the conversion efficiency of the system. In this study, a mathematical model is used to estimate the total (global) solar radiation on a tilted surface and to calculate the output energy of PV panels. An experimental setup, installed in Graduate University of Advanced Technology, is utilized to provide the real data. The photovoltaic panels were set to an orientation angle of 0° with tilt angles of 0°, 10°, 20°, 30°, 40° and 50°. Then, comparing output data of mathematical model and logged data, a suitable correspondence between mathematical model and logged data was found for tilt angles bigger than 10 degrees. The experimental data, however, revealed slightly different results for angles less than 10 degree. Because of dust effect, the measured output energy from experimental setup, was less than the model predicted energy. It is suggested that the effect of environmental parameters such as dust deposition be considered to determine the optimal tilt angle
机译:太阳辐射转换系统的性能受其相对于水平面的倾斜角的影响,因此光伏阵列需要以正确的角度倾斜以最大化系统的转换效率。在这项研究中,使用数学模型来估计倾斜表面上的总(全局)太阳辐射并计算PV面板的输出能量。利用先进技术大学中安装的实验装置来提供真实数据。将光伏板设置为0°的定向角,倾斜角为0°,10°,20°,30°,40°和50°。然后,将数学模型的输出数据与测井数据进行比较,发现对于大于10度的倾斜角,数学模型与测井数据之间存在适当的对应关系。但是,实验数据表明,对于小于10度的角度,结果略有不同。由于灰尘的影响,从实验装置测得的输出能量小于模型预测的能量。建议考虑环境参数(例如灰尘沉积)的影响来确定最佳倾斜角

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