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Degradation evaluation of crystalline-silicon photovoltaic modules after a few operation years in a tropical environment

机译:在热带环境中运行数年后晶体硅光伏组件的降解评估

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摘要

This paper presents an evaluation of the performance degradation of Photovoltaic modules after few operation years in a tropical environment. To this end, the International Center for Research and Training in solar energy at Dakar University and the Lasquo-ISTIA laboratory of Angers University have put in place a research project in order to investigate the impact of the tropical climatic conditions on the PV modules characteristics. Accordingly, two monocrystalline-silicon (mc-Si) PV modules and two polycrystalline- silicon (pc-Si) PV modules are installed at Dakar in Senegal and monitored during a few operation years: Module A (16 months), Module B (41 months), Module C (48 months) and Module D (48 months). After few operation years under tropical environment, the global degradation and the degradation rate of electrical characteristics such as I-V and P-V curves, open-circuit voltage (V_(oc)), short-circuit current (I_(sc)), maximum ouput current (I_(max)), maximum output voltage (V_(max)), maximum power output (P_(max)) and fill factor (FF) are evaluate at standard test conditions (STC). This study reports on data collected from 4 distinct mono- and poly-crystalline modules deployed at Dakar University in Senegal. The study has shown that P_(max), I_(max), I_(sc) and FF are the most degraded performance characteristics for all PV modules. The maximum power output (P_(max)) presents the highest loss that can be from 0.22%/year to 2.96%/year. However, the open-circuit voltage (V_(oc)) is not degraded after these few exposition years for all studied PV modules.
机译:本文提出了在热带环境中运行数年后,光伏组件性能下降的评估。为此,达喀尔大学国际太阳能研究与培训中心和昂热大学Lasquo-ISTIA实验室开展了一项研究项目,以研究热带气候条件对PV组件特性的影响。因此,在塞内加尔的达喀尔安装了两个单晶硅(mc-Si)光伏模块和两个多晶硅(pc-Si)光伏模块,并在接下来的几年中对其进行了监视:模块A(16个月),模块B(41个月),模块C(48个月)和模块D(48个月)。在热带环境下运行数年后,总体退化和电气特性的退化率,例如IV和PV曲线,开路电压(V_(oc)),短路电流(I_(sc)),最大输出电流(I_(max)),最大输出电压(V_(max)),最大功率输出(P_(max))和填充系数(FF)在标准测试条件(STC)下进行评估。这项研究报告了从塞内加尔达喀尔大学部署的4种不同的单晶和多晶模块收集的数据。研究表明,P_(max),I_(max),I_(sc)和FF是所有PV组件性能下降最严重的特性。最大功率输出(P_(max))表现出最高的损耗,可能从0.22%/年到2.96%/年。但是,对于所有研究过的光伏组件来说,在这几年的暴露之后,开路电压(V_(oc))不会降低。

著录项

  • 来源
    《Solar Energy》 |2014年第5期|70-77|共8页
  • 作者单位

    Centre International de Formation et de Recherche en Energie Solaire (CIFRES), Ecole Superieure Polytechnique-UCAD, BP 5085 Dakar-Fann, Senegal;

    Centre International de Formation et de Recherche en Energie Solaire (CIFRES), Ecole Superieure Polytechnique-UCAD, BP 5085 Dakar-Fann, Senegal;

    University of Angers-ISTIA-LASQUO, 62 Avenue Notre Dame du Lac 49000 Angers, France;

    Centre International de Formation et de Recherche en Energie Solaire (CIFRES), Ecole Superieure Polytechnique-UCAD, BP 5085 Dakar-Fann, Senegal;

    Centre International de Formation et de Recherche en Energie Solaire (CIFRES), Ecole Superieure Polytechnique-UCAD, BP 5085 Dakar-Fann, Senegal;

    University of Angers-ISTIA-LASQUO, 62 Avenue Notre Dame du Lac 49000 Angers, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic module; Degradation; Tropical environment;

    机译:光伏模块降解;热带环境;

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