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首页> 外文期刊>Progress in photovoltaics >Crystalline silicon PV module degradation after 20years of field exposure studied by electrical tests, electroluminescence, and LBIC
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Crystalline silicon PV module degradation after 20years of field exposure studied by electrical tests, electroluminescence, and LBIC

机译:通过电学测试,电致发光和LBIC研究了20年现场暴露后结晶硅PV组件的退化

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摘要

Standardized tests to assure the reliability of photovoltaic modules and to detect possible early failures of modules when exposed in the field, due to design flaws or to the use of non-appropriate materials, have played an important role in the successful growth of photovoltaic market in recent years. In order for this growth to be sustainable in coming years, it is crucial to keep the confidence of investors in standard well-established technologies and to increase confidence in new emerging technologies. For these reasons, there is an ongoing work for the improvement of current tests and for the development of new ones, which besides assuring module reliability in the field, have also the aim of predicting their lifetime. The analysis of degradation of modules that were field exposed over a long period of time is fundamental to identify the degradation mechanisms and to collect statistics on modules behavior. This work focuses on the analysis of the change of the photovoltaic module electrical characteristics after approximately 20years of field exposure, considering differences in the design of cells that were used for the production of these modules, which were identified by detailed visual inspection. Failure modes were investigated by comprehensive visual inspection and the use of spatially resolved analysis techniques as follows: laser beam-induced current and electroluminescence. The main failure mode identified was yellowing of the encapsulant. (c) 2015 The Authors. Progress in Photovoltaics: Research and Applications published by John Wiley & Sons Ltd.
机译:标准化测试可确保光伏模块的可靠性,并检测由于设计缺陷或使用不合适的材料而在野外暴露时可能出现的早期模块故障,这些在标准化光伏市场中发挥了重要作用。最近几年。为了使这种增长在未来几年中可持续,至关重要的是要保持投资者对标准成熟技术的信心,并增加对新兴技术的信心。由于这些原因,正在进行一项工作以改进当前的测试并开发新的测试,除了确保现场模块的可靠性外,其目的还在于预测其使用寿命。分析长时间暴露在外的模块的退化情况对于确定退化机制并收集有关模块行为的统计信息至关重要。这项工作着重于分析光伏组件电特性在经过大约20年的野外照射后的变化,并考虑了用于生产这些组件的电池设计的差异,这些差异通过详细的目视检查得以识别。通过全面的目视检查和以下空间分辨分析技术的使用来研究失效模式:激光束感应电流和电致发光。确定的主要故障模式是密封剂泛黄。 (c)2015作者。光伏技术的进展:研究与应用,John Wiley&Sons Ltd.出版。

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