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光伏发电技术
★ 5.0
硅异质结光伏组件裂纹建模:一个真实世界的案例研究
Modeling Cracks in Silicon-Heterojunction Photovoltaic Modules: A Real-World Case Study
| 作者 | Marco Nicoletto · Davide Panizzon · Alessandro Caria · Nicola Trivellin · Carlo De Santi · Matteo Buffolo |
| 期刊 | IEEE Journal of Photovoltaics |
| 出版日期 | 2025年7月 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 硅异质结光伏模块 裂纹 电致发光 红外热成像 潜在缺陷 |
语言:
中文摘要
本研究通过分析裂纹在低电流和高电流条件下对硅异质结光伏(PV)组件的电学和热学行为的影响,探究了裂纹对硅异质结光伏组件的影响。研究针对遭受严重雹灾的光伏组件展开,此次雹灾产生的冰雹直径达16厘米,远超标准测试尺寸(IEC 61215)。研究采用电致发光(EL)和红外(IR)热成像技术,结合暗态和亮态电流 - 电压特性表征,对冰雹和人为造成的裂纹进行了检测。研究结果表明,这些裂纹属于潜在损伤,肉眼无法察觉,只能通过EL和IR检测发现。在开路电压附近,这些裂纹会导致局部温度升高;在短路条件下,则会使温度升高分布更为均匀。本研究开发了一个Simulink/Matlab模型,用于模拟有裂纹的电池与完好电池串联时的热行为,以重现实际场景中发生的情况。研究结果强调了识别光伏组件潜在缺陷对于确保其长期可靠性、安全性和效率的重要性,为理解光伏组件在低电流和高电流状态下的电学和热学行为提供了见解。
English Abstract
This work investigates the impact of cracks on silicon heterojunction photovoltaic (PV) modules by analyzing their electrical and thermal behavior under low and high current conditions. The analysis was conducted on PV modules affected by a severe hailstorm, which produced hailstones up to 16 cm in diameter, far exceeding the standard test sizes (IEC 61215). A combination of electroluminescence (EL) and infrared (IR) thermography, along with dark and light current–voltage characterization, was employed to examine both hail and operator-induced cracks. The findings revealed that these cracks, which are latent damages not visible to the naked eye but only with EL and IR investigations, lead to localized temperature increase near open circuit voltage, and to a more uniform distributed temperature increase near short circuit conditions. A Simulink/Matlab model was developed to reproduce the thermal behavior of cracked cells in series with intact ones, to reproduce what happens in a real-world scenario. The results emphasize the importance of identifying latent defects in PV modules to ensure long-term reliability, safety, and efficiency, offering insights into their electrical and thermal behavior in low and high current regime.
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SunView 深度解读
该硅异质结组件裂纹建模技术对阳光电源SG系列光伏逆变器和iSolarCloud智能运维平台具有重要应用价值。研究揭示的裂纹导致电流传输效率下降和局部热点问题,可直接应用于逆变器MPPT算法优化,通过识别异常I-V曲线特征实现裂纹组件的早期诊断。裂纹引发的热-电耦合退化模型可集成到iSolarCloud预测性维护系统,建立基于红外热成像和电气参数的组件健康评估模型,提升电站全生命周期可靠性管理能力。对于PowerTitan储能系统中的光储融合场景,该技术有助于优化组件级监控策略,避免裂纹组件影响系统整体性能,为阳光电源提供从设备端到云平台的全链条质量管控技术支撑。