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Evaluation performance of photovoltaic modules after a long time operation in Saharan environment

机译:在撒哈拉环境中长时间运行后的光伏模块评估性能

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Reliability and lifetime of photovoltaic (PV) systems depend mainly on the energy performance of modules and on their different degradation modes. Accordingly, research must be focused on degradations of PV modules. This paper presents the results of investigations carried out on the degradation mechanisms of PV modules of the Melouka central in the area of Adrar in Algeria after 28 years of exposure in the Saharan environment. Main degradation modes are observed through visual inspection of PV modules: discoloration of encapsulant, broken and abrasion of glass, delamination, discoloration and hot spot of cells, oxidation of front grid fingers and thermal shocks. The current-voltage (I-V) characteristics are acquired with outdoor measurements in the site. The experimental results permit to detect both hot spots and thermal shocks which are the most detrimental total defects visually observable in the site, and to quantify the reduction of electrical performance data correlated with visual degradation data. A maximum power (P-max) degradation rate of 1.22%/year is found which is closely related to short-circuit current (I-sc) of 0.78%/year, followed by fill factor (FF) of 0.57%/year and finally short-circuit voltage (V-oc) of 0.1%/year. Akin results are reported in literature for PV modules exploited under desert climate for long duration. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:光伏(PV)系统的可靠性和寿命主要取决于模块的能源性能及其不同的降解模式。因此,研究必须集中在光伏组件的退化上。本文介绍了在撒哈拉沙漠环境中暴露28年后,对阿尔及利亚阿德拉尔地区Melouka中部光伏组件降解机理的研究结果。通过目视检查光伏组件可以观察到主要的降解模式:密封剂的变色,玻璃的破碎和磨损,电池的分层,变色和热点,前栅指的氧化和热冲击。电流-电压(I-V)特性是通过现场室外测量获得的。实验结果允许检测热点和热冲击,这是在现场视觉上可观察到的最有害的总缺陷,并且可以量化与视觉退化数据相关的电性能数据的降低。发现最大功率(P-max)降解率为1.22%/年,这与0.78%/年的短路电流(I-sc)密切相关,其后为0.57%/年的填充因数(FF)和最终短路电压(V-oc)为0.1%/年。在文献中报道了在沙漠气候下长期开采的光伏组件的相似结果。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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