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光伏发电技术
★ 5.0
具有接触退化迹象的户外暴露光伏组件表征
Characterization of Field-Exposed Photovoltaic Modules Featuring Signs of Contact Degradation
| 作者 | Max Liggett · Dylan J. Colvin · Andrew Ballen · Manjunath Matam · Hubert P. Seigneur · Mengjie Li |
| 期刊 | IEEE Journal of Photovoltaics |
| 出版日期 | 2025年2月 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 光伏组件 金属接触腐蚀 多尺度表征 乙酸腐蚀 扫描电子显微镜 |
语言:
中文摘要
本研究对多个因在炎热潮湿气候环境中暴露而出现金属接触腐蚀迹象的光伏(PV)组件展开调查。这些组件包括两个暴露时长分别为10年和14年的多晶硅铝背场系统,以及一个暴露时长为4年的单晶硅钝化发射极背接触电池系统。采用了全面的多尺度表征方法对这些光伏组件进行详细评估。进行了电流 - 电压($I - V$)、太阳电池开路电压(Suns - $V_{\text{OC}}$)测量、电致发光成像、红外成像和紫外荧光成像,并对感兴趣的部位进行取样,采用截面扫描电子显微镜(SEM)进行分析。提出并实施了一套严格的截面扫描电镜图像定量分析流程。细致的表征工作确实显示,部分光伏组件确实呈现出与之前在环境试验箱中经湿热试验的光伏组件相同的典型腐蚀迹象,即银/硅界面处玻璃粉发生基于乙酸的腐蚀。
English Abstract
This work investigates several photovoltaic (PV) modules that have shown signs of metal contact corrosion due to field exposure in a hot and humid climate. This includes two multicrystalline silicon aluminum back surface field systems with 10 and 14 years of exposure and one monocrystalline silicon passivated emitter and rear cell system with four years of exposure. A comprehensive, multiscale characterization process is used to evaluate these PV modules in great detail. Current–voltage ( I-V ), Suns- V_OC measurements, electroluminescence imaging, infrared imaging, and ultraviolet fluorescence imaging were performed, and locations of interest were cored and analyzed using cross-sectional scanning electron microscopy (SEM). A rigorous, quantitative analysis procedure for the cross-sectional SEM images is proposed and implemented. Careful characterization does reveal that some of these PV modules do indeed exhibit the same classic signs of acetic-acid-based corrosion of the glass frit that is present at the silver/silicon interface, which have been observed previously in PV modules exposed to damp heat in an environmental chamber.
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SunView 深度解读
该研究对阳光电源SG系列光伏逆变器配套组件的长期可靠性评估具有重要价值。研究揭示的湿热环境下金属栅线腐蚀与封装材料水解导致的接触退化机制,可直接应用于iSolarCloud智能运维平台的预测性维护算法优化。通过集成电致发光与红外热成像的诊断方法,能提升智能诊断系统对组件接触劣化的早期识别能力,在填充因子异常下降前预警。该失效机理分析为阳光电源在高温高湿地区(如东南亚、中东市场)的光伏系统设计提供组件选型依据,并可指导PowerTitan储能系统中光储一体化方案的组件耐候性评估标准制定,延长系统全生命周期可靠性。