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Optimum PV module interconnection layout and mounting orientation to reduce inhomogeneous soiling losses in desert environments

机译:最佳光伏模块互连布局和安装方向,以减少沙漠环境中的不均匀污染损失

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摘要

Photovoltaic modules in desert areas benefit from high irradiation levels but suffer, among other parameters, from high soiling ratios, which influence the output power of the modules. Power loss due to soiling can reach more than 20% per month if not cleaned. Besides, inhomogeneous soiling by accumulation of dust on the corners and bottom of the modules may lead to total power loss of the modules. Modification in cell sizes, electrical interconnection, and mounting orientation of the modules can reduce the losses from inhomogeneous soiling. In this paper, we evaluate the performance of three module designs with full- and half-sized solar cells with different interconnection designs for different inhomogeneous soiling conditions. The modules are investigated in two mounting orientation of portrait and landscape installation with two scenarios of corner and edge soiling. The simulation results supported by the experimental data indicate that the PV modules in favorable mounting positions show up to 65% higher output power depending on the module design and soiling patterns. It is shown that our proposed optimized design mounted in favorable orientation is less sensitive to the inhomogeneous soiling and shows less current losses compared to the nominal operating current. Consequently, the module shows less current mismatch with the other modules in an array.
机译:沙漠地区的光伏模块受益于高辐射水平,但在其他参数中受到影响,影响模块的输出功率的高污染率。如果没有清洁,由于污染可能导致的电源损失可以达到20%以上。此外,通过模块的角落和底部积聚灰尘的不均匀污染可能导致模块的总功率损失。在单元尺寸,电互连和模块的安装方向上的修改可以减少不均匀污染的损耗。在本文中,我们评估了三个模块设计的性能与具有不同互连设计的全尺寸和半尺寸的太阳能电池,用于不同的不均匀污染条件。这些模块以肖像和景观安装的两种安装方向进行了调查,具有两种角落和边缘污染。实验数据支持的仿真结果表明,由于模块设计和污染图案,良好安装位置中的光伏模块显示出高达65%的输出功率。结果表明,我们所提出的优化设计以有利的取向安装在不均匀的污染不太敏感,并且与标称工作电流相比,电流损失较少。因此,模块显示较少的当前与阵列中的其他模块不匹配。

著录项

  • 来源
    《Solar Energy》 |2020年第6期|267-274|共8页
  • 作者单位

    Fraunhofer Ctr Silicon Photovolta CSP Halle Saale Germany|Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany;

    Fraunhofer Ctr Silicon Photovolta CSP Halle Saale Germany|Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany|Anhalt Univ Appl Sci Kothen Germany;

    Fraunhofer Ctr Silicon Photovolta CSP Halle Saale Germany|Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany;

    Fraunhofer Ctr Silicon Photovolta CSP Halle Saale Germany|Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany;

    Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany;

    Qatar Energy & Environm Res Inst QEERI Doha Qatar;

    Fraunhofer Ctr Silicon Photovolta CSP Halle Saale Germany|Fraunhofer Inst Microstruct Mat & Syst IMWS Halle Saale Germany;

  • 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

    Soiling; Inhomogeneous soiling; Half-cell module; Partial shading; Module design; PV module; Interconnection layout;

    机译:污染;不均匀的污染;半电池模块;部分遮蔽;模块设计;光伏模块;互连布局;
  • 入库时间 2022-08-18 21:17:49

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