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Electrical properties degradation of Photovoltaic modules caused by lightning induced voltage.

机译:雷电感应电压导致光伏组件的电性能下降。

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摘要

Lightning is one of the main factors that cause Photovoltaic (PV) systems to fail. The PV modules inside PV systems, like any other electric equipment, will be degraded under electrical stress. The effect of electrical degradation of the PV modules caused by lightning induced voltage has been rarely reported. In the dissertation, the electrical properties degradation of a polycrystalline silicon module was studied.;Firstly, lightning impulse voltages of positive polarity ranging from low to high are applied on different groups of the testing modules. All these lightning impulse voltage tests are conducted in the same experimental condition except for their stress voltage magnitudes. The maximum power output, I-V characteristics, and dark forward I-V curve are measured and reported periodically during the lightning impulse voltage tests. By comparing the maximum output power and changes in the internal electrical properties, it could be concluded that lightning impulse voltages, even medium voltage levels, will cause degradation to the sample. The relationship of the maximum output power and the number of applied impulses for different testing voltage levels are compared. An analysis of the electrical property changes caused by the lightning impulse voltages is presented.;Secondly, a group of samples are tested with lightning impulse voltage of negative polarity. A comparison of the impulse voltage aging effects at the same voltage level with positive polarity is made. The maximum power output drop caused by positive and negative lightning impulses are compared. Laboratory results revealed that positive and negative lightning impulses will not only influence the degree of degradation, but also lead to different electrical property changes.;Finally, a comparison of the effect of lightning impulses combined with other stress factors are discussed. The study simulates a field-aged sample's behavior at lightning impulse voltage testing conditions. The result suggests that the degradation caused by lightning impulse voltage is greatly accelerated when the sample has bubbles and delamination. Electrical breakdown of the module is caused by the failure of the insulation.
机译:雷电是导致光伏(PV)系统发生故障的主要因素之一。像任何其他电气设备一样,光伏系统内部的光伏模块将在电应力作用下退化。几乎没有报道过由雷电感应的电压引起的光伏组件电降解的影响。本文主要研究了多晶硅组件的电性能下降。首先,将正极性的雷电脉冲电压从低到高依次施加到不同组的测试模块上。所有这些雷电冲击电压测试均在相同的实验条件下进行,除了其应力电压幅度不同。在雷电冲击电压测试期间,定期测量并报告最大功率输出,I-V特性和暗前向I-V曲线。通过比较最大输出功率和内部电特性的变化,可以得出结论,雷电脉冲电压,即使是中等电压水平,也会导致样品降解。比较了不同测试电压电平下最大输出功率与施加的脉冲数之间的关系。分析了由雷电冲击电压引起的电性能变化。其次,用负电压的雷电冲击电压测试了一组样品。比较了在相同电压水平下具有正极性的脉冲电压老化效应。比较了由正负雷电脉冲引起的最大功率输出下降。实验结果表明,正,负雷电脉冲不仅会影响其退化程度,还会导致不同的电性能变化。最后,对雷电脉冲与其他应力因素的作用进行了比较。该研究模拟了雷电冲击电压测试条件下的现场老化样品的行为。结果表明,当样品有气泡和分层时,由雷电冲击电压引起的降解会大大加快。模块的电气故障是由绝缘故障引起的。

著录项

  • 作者

    Jiang, Taosha.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:43

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