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Performance evaluation of a PV module under climatic conditions of Dhahran, Saudi Arabia

机译:沙特阿拉伯达兰气候条件下的光伏组件性能评估

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摘要

In this paper, the performance characteristics of a photovoltaic (PV) module are modeled numerically and validated experimentally for the typical climatic conditions of Dhahran, Saudi Arabia. The electrical model is developed using EES software including all the important parameters like cell temperature, maximum power point current, maximum power point voltage, electrical power, and maximum power point efficiency. The model results were compared with the experimental values obtained by exposing the PV panel to the local environmental conditions of Dhahran. The variation of cell temperature, maximum power point current, voltage, maximum power and efficiency of PV module was recorded for a typical day and the effect of climatic conditions including solar irradiance, ambient temperature and wind speed was quantified. Finally, the modeled results were found to be in close agreement with the experimental values with a correlation coefficient of r = 0.98 and root mean square error of e = 5.2% for the overall efficiency and power output.
机译:在本文中,对沙特阿拉伯达兰的典型气候条件进行了数值建模并通过实验验证了光伏(PV)模块的性能特征。电气模型是使用EES软件开发的,包括所有重要参数,例如电池温度,最大功率点电流,最大功率点电压,功率和最大功率点效率。将模型结果与通过将光伏面板暴露在Dhahran的当地环境条件下获得的实验值进行比较。记录一天中电池温度,PV模块的最大功率点电流,电压,最大功率和效率的变化,并量化包括太阳辐照度,环境温度和风速在内的气候条件的影响。最后,发现建模结果与实验值非常吻合,相关系数为r = 0.98,对于总效率和功率输出,均方根误差为e = 5.2%。

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