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Characterisation of c-Si modules after 20 years of outdoor exposure on an electric vehicle

机译:电动汽车在户外暴露20年后对c-Si模块的表征

摘要

Characterisation of 4 crystalline silicon photovoltaic modules mounted on an electric vehicle and exposed outdoor for more than 20 years was performed. Heavy soiling was apparent and manual cleaning led to an average increase of Pmax of 14%, due mainly to an increase in Isc. One of the modules presented a severe damage with a FF below 37% and a decrease in the Pmax around -55%. An annual degradation rate of -0.24% for the module on the bonnet (different manufacturer than the other modules) and between -0.84 to -2.75% for the other modules was obtained, being slight greater than other reported values for crystalline silicon bared modules. The visual inspection showed modules heavily soiled and different defects, such as finger interruptions, discoloration, delamination and broken cells were apparent. Electroluminescence and IR imaging enabled the identification of modules with defects of the cells that can cause high cell temperatures during module operation, potentially leading to damages and a relation between the soiling parts and the relative EL intensity was found.
机译:对安装在电动汽车上并暴露在室外超过20年的4个晶体硅光伏模块进行了表征。很明显,很脏,手动清洗导致Pmax平均增加14%,这主要是由于Isc的增加。其中一个模块表现出严重损坏,FF低于37%,Pmax降低约-55%。阀盖上的模块(与其他模块不同的制造商)的年降解率为-0.24%,其他模块的年降解率为-0.84至-2.75%,略高于晶体硅裸露模块的其他报告值。目视检查显示模块被严重弄脏,并且明显出现各种缺陷,例如手指打断,变色,分层和破碎的电池。电致发光和IR成像可以识别具有电池缺陷的模块,这些模块可能会在模块运行期间引起较高的电池温度,从而可能导致损坏,并且发现脏污部件与相对EL强度之间的关系。

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