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Assessment of early degradation and performance loss in five co-located solar photovoltaic module technologies installed in Ghana using performance ratio time-series regression

机译:使用性能比时间序列回归评估加纳安装的五种并置太阳能光伏组件技术的早期退化和性能损失

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Long-term performance degradation in solar photovoltaic modules is generally understood to be linear. Nevertheless, there is increasing acknowledgement of sharper performance decline within the early periods of exposure. Emerging industry trend is geared toward providing multi-staged warranties that provide assurances of both early-period module output and longer-term performance. While studies on performance degradation are increasing in the open literature, there remains significant geographical imbalance. Moreover, many of the studies available are based on discrete measurements, with few resulting from continuous monitoring. This paper presents the outcome of analysis conducted to explore performance degradation of five solar photovoltaic module technologies within the first 14 months of installation in Kumasi Ghana. Based on time-series regression of the performance ratios, early degradation ranged from 8% to 13.8% of initial performance. Technologies studied were amorphous silicon, mono-crystalline silicon, polycrystalline silicon, Copper Indium Sulfide and hybrid Heterojunction with intrinsic Thin-layer (HIT). (C) 2018 Elsevier Ltd. All rights reserved.
机译:通常将太阳能光伏模块中的长期性能降低理解为线性的。然而,越来越多的人认识到在暴露的早期,性能会急剧下降。新兴的行业趋势是朝着提供多阶段保证的方向发展,这些保证为早期模块输出和长期性能提供保证。尽管公开文献中有关性能下降的研究正在增加,但仍然存在明显的地理失衡。此外,许多可用的研究都是基于离散测量,而很少有来自连续监测的结果。本文介绍了分析的结果,以探讨在库马西加纳安装后的头14个月内五种太阳能光伏组件技术的性能下降。根据绩效比率的时间序列回归,早期退化的范围为初始绩效的8%至13.8%。研究的技术是非晶硅,单晶硅,多晶硅,硫化铜铟和具有本征薄层(HIT)的混合异质结。 (C)2018 Elsevier Ltd.保留所有权利。

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