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Simulation of Optical and Electrical Losses of PV Modules in Moderate and Desert Conditions

机译:在中等和沙漠条件下模拟光伏组件的光电损耗

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Measurements of the PV modules are based on standard test conditions. However, PV modules have significant difference in performance based on the locations, environmental conditions and mounting situation. One of the environmental factors which influence the performance of the PV module is the spectrum of incident light on the PV module.In this paper, we compare the optical reflection losses, thermal losses as well as electricity production of modules under moderate (AM1.5) and desert-like spectrums (AM1.0). The results show quantitatively that thermalization has the highest loss portion with an average of 29.5% of the total incoming power density for both spectrums.The highest relative change is for absorption of light in polymer encapsulant especially between 280-400 nm with 24.3% and total resistive losses (in cell and interconnection) with 21.3% extra losses from desert to moderate conditions.Finally, we show that similar modules in desert climate produce 5% extra power gain while it suffers from 7.2% extra heat and 5% extra reflections.
机译:光伏组件的测量基于标准测试条件。但是,根据位置,环境条件和安装情况,PV组件的性能会有很大差异。影响光伏组件性能的环境因素之一是光伏组件上的入射光光谱。本文比较了中度(AM1.5)下组件的光反射损耗,热损耗以及发电量)和类似沙漠的光谱(AM1.0)。结果定量地表明,在两个光谱中,热化具有最高的损耗部分,平均占总输入功率密度的29.5%。最大的相对变化是对于聚合物密封剂中的光吸收,尤其是在280-400 nm之间吸收的光,占总吸收功率的24.3%电阻损耗(在电池和互连中),从沙漠到中度条件会产生21.3%的额外损耗。最后,我们表明,沙漠气候中的类似模块产生5%的额外功率增益,而遭受7.2%的额外热量和5%的额外反射。

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