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不同遮阴条件下太阳能电池性能的实验与数值研究
Experimental and numerical study of solar cell performance under different shading conditions
| 作者 | Yashun Lua · Jiapeng Wanga · Penghui Liua · Roohollah Rafee · Saman Rashidi · Guiqiang Lia |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 296 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | DAB |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 光伏组件 阴影 太阳能电池性能 实验测量 数值模拟 |
语言:
中文摘要
摘要 在光伏(PV)组件的实际应用中,遮阴是一个不可避免的问题。本研究通过结合实验测量与数值模拟,系统地探讨了遮阴对太阳能电池性能的影响。在不同遮阴比例下,分析了包括开路电压(Voc)、短路电流(Isc)、最大输出功率(Pmax)以及串联电阻(Rs)在内的关键性能参数。实验结果表明,遮阴显著降低了Isc和Pmax,二者均随遮阴比例的增加呈线性下降趋势。与此同时,Voc仅略有下降,而Rs则呈指数增长,表明在遮阴条件下,串联电阻在功率损失中起着至关重要的作用。此外,本文提出了一种等效变换方法,可将常规遮阴模式转换为沿坐标轴方向的等效条带状遮阴,从而实现多种遮阴条件下的快速性能预测。实验验证表明,预测得到的I-V和P-V特性曲线与实测结果具有高度一致性,关键性能参数的相对偏差均保持在3%以下。而且,所提出的模型在预测不规则遮阴(如树叶造成的遮阴)影响方面也表现出高精度。这些研究成果为评估遮阴对太阳能电池效率的影响提供了技术支持,并为均匀及非均匀遮阴条件下太阳能电池性能的评估提供了一种有效的建模工具。
English Abstract
Abstract In practical applications of photovoltaic (PV) modules, the shading is an unavoidable issue. This study systematically investigates the impact of the shading on the performance of solar cells by combining experimental measurements with numerical simulations. Key performance parameters, including open circuit voltage ( V oc ), short circuit current ( I sc ), maximum output power ( P max ), and series resistance ( R s ), are analyzed under different shading ratios. The experimental results demonstrate that the shading significantly reduces I sc and P max , both of which exhibit a linear decreasing trend as the shading ratio increases. Meanwhile, V oc shows only a slight decline, whereas R s increases exponentially, indicating that series resistance plays a crucial role in power loss under the shading conditions. Furthermore, an equivalent transformation method is proposed, which converts regular shading patterns into equivalent strip-shaped shading along the coordinate axis, enabling rapid performance prediction under various shading conditions. Experimental validation confirms a high degree of agreement of the predicted and measured I-V and P-V characteristics, with relative deviations in key performance parameters remaining below 3%. Moreover, the proposed model exhibits high accuracy in predicting the impact of the irregular shading, such as the shading caused by leaves. These findings provide technical support for assessing the effect of shading on solar cell efficiency and offer as an effective modeling tool for evaluating the performance of solar cells under both uniform and non-uniform shading conditions.
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SunView 深度解读
该遮挡条件下光伏性能研究对阳光电源SG系列逆变器的MPPT优化具有重要价值。研究揭示遮挡导致Isc和Pmax线性下降、Rs指数增长的规律,可指导逆变器在复杂遮挡场景下的最大功率点追踪算法优化。提出的等效条带遮挡转换方法可集成至iSolarCloud平台,实现遮挡损失快速预测和智能运维。研究中3%以内的预测偏差验证了模型精度,为1500V高压系统在建筑、山地等非均匀遮挡环境的发电量评估提供技术支撑,助力提升组串式逆变器在实际应用中的发电效率和系统可靠性。