首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >COMPARISON OF DEGRADATION MECHANISM OF PV MODULES BETWEEN UNDER LONG TERM FIELD EXPOSURE AT A HOT-HUMID ENVIRONMENT AND UNDER DH TESTS
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COMPARISON OF DEGRADATION MECHANISM OF PV MODULES BETWEEN UNDER LONG TERM FIELD EXPOSURE AT A HOT-HUMID ENVIRONMENT AND UNDER DH TESTS

机译:热湿环境下长期暴露于光伏下的光伏组件降解机理的比较

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摘要

Degradation of the photovoltaic (PV) modules exposed for 18 years at a hot and humid environment (at Miyakojima Island) and that of PV modules subjected to the extended DH tests (1000 h~4000 h) were studied. The similarities and differences in degradation mechanisms between both modules were examined. We found both modules showed similar degradation to each other, such as views of dark regions in electroluminescence (EL) images and primary cause of power losses (a series resistance increase). Furthermore, it was observed that power losses of both modules were caused by an increase in contact resistance of Ag/Si interface of finger electrodes. Observations of cross sectional contact interface by an electron microscope suggested that a lead-glass layer at the interface probably plays an important role during contact degradation in acidic environment. On the other hand, however, detected amounts of residual acetic acid in the Miyakojima modules were roughly only 1/10 of those in the DH degraded modules And a clear correlation between the amount of residual acetic acid and the power loss of the module, which was shown in extended DH modules, was not shown in outdoor exposed modules including Miyakojima modules.
机译:研究了在炎热潮湿的环境下(宫古岛)暴露了18年的光伏(PV)组件的降解以及经过扩展DH测试(1000 h〜4000 h)的PV组件的降解。研究了两个模块之间的降级机制的异同。我们发现这两个模块彼此之间表现出相似的退化,例如电致发光(EL)图像中的暗区视图以及功率损耗(串联电阻增加)的主要原因。此外,观察到两个模块的功率损耗是由指状电极的Ag / Si界面的接触电阻的增加引起的。用电子显微镜对横截面接触界面的观察表明,在酸性环境下接触降解期间,界面处的铅玻璃层可能起重要作用。然而,另一方面,在宫古岛组件中检测到的残留乙酸量仅为DH降解组件中的残留乙酸的约1/10,并且残留乙酸量与组件的功率损耗之间存在明显的相关性,在扩展的DH模块中显示,在包括Miyakojima模块的室外暴露模块中未显示。

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