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光伏发电技术 储能系统 工商业光伏 可靠性分析 ★ 5.0

PERC、TOPCon和SHJ组件在沙漠气候下的性能与可靠性综合评估

Comprehensive assessment of performance and reliability of PERC, TOPCon and SHJ modules in desert climates

语言:

中文摘要

摘要 隧穿氧化层钝化接触(TOPCon)和硅异质结(SHJ)太阳能电池是当前光伏(PV)市场的关键技术,正在取代过去十年占据主导地位的钝化发射极和背表面电池(PERC)技术。尽管这些技术取得了进步并迅速被市场采纳,但它们在实际应用环境中的性能与可靠性仍缺乏充分理解。本研究评估了在卡塔尔沙漠气候下安装约三年的商用PERC、TOPCon和SHJ光伏组件的性能与可靠性。通过对组件进行室内外测试,分析其随时间推移的退化情况、性能比以及不同季节下的单位能量输出。在研究期间,SHJ组件表现出最高的退化程度,最大功率(Pmax)平均相对衰减高达8.73%。其中一款TOPCon组件显示出显著退化,而另一款则表现出优异的稳定性,并具有最低的整体退化水平。PERC组件在初期经历了明显的退化,但在第一年后退化速率显著降低,而SHJ和TOPCon组件的退化速率则持续保持。目视检查发现,SHJ组件中出现了严重的封装材料脱层现象,主要发生在第一年内。紫外荧光成像显示,部分SHJ和TOPCon组件存在严重的封装材料及边缘密封老化迹象,表明存在早期失效的潜在风险。性能比结果表明,双面SHJ和TOPCon组件总体上优于PERC组件。然而,某一款PERC组件在现场表现出了卓越的性能,暗示其可能采用了更优质的材料或更先进的制造工艺。本研究揭示了先进光伏技术在严酷气候条件下的优势与挑战,为其大规模部署潜力提供了宝贵的见解。

English Abstract

Abstract Tunnel Oxide Passivated Contact (TOPCon) and Silicon Heterojunction (SHJ) solar cells are key technologies in the photovoltaic (PV) market, replacing Passivated Emitter and Rear Cell (PERC) technology which have dominated the market for the past decade. Despite the advancements and rapid market adoption, the performance and reliability of these technologies in the field remain inadequately understood. This study evaluates the performance and reliability of commercial PERC, TOPCon, and SHJ PV modules installed in Qatar’s desert climate for about three years. The modules were assessed indoors and outdoors to evaluate degradation over time, performance ratios and specific energy yield across seasons. During the study period, SHJ modules exhibited the highest degradation, with average P m a x decline of up to 8.73% relative. One TOPCon model showed notable degradation, while the other model demonstrated superior stability and the lowest overall degradation. PERC modules experienced significant degradation initially but showed a marked reduction in degradation after the first year, unlike SHJ and the TOPCon modules whose degradation rates persisted over time. Visual inspections revealed significant encapsulant delamination, occurring mostly in the first year in the SHJ modules. Ultraviolet Fluorescence imaging showed signs of severe encapsulant and edge-seal degradation in some of the SHJ and TOPCOn modules. These findings indicate potential for early failure. Performance ratios show that bifacial SHJ and TOPCon modules generally outperform PERC modules. However, a particular model of PERC module exhibited an exceptional performance in the field, suggesting the use of superior materials or manufacturing process. This study highlights the advantages and challenges of advanced PV technologies in harsh climatic conditions, providing valuable insights into their potential for large-scale deployment.
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SunView 深度解读

该研究对阳光电源光伏逆变器产品线具有重要参考价值。TOPCon和SHJ组件在沙漠气候下的性能差异显著,其中双面组件表现优异但部分型号存在封装退化风险。这要求SG系列逆变器需强化MPPT算法以适应组件衰减特性变化,并通过iSolarCloud平台集成紫外成像等预测性维护功能,实时监测组件退化。针对双面TOPCon组件的低衰减特性,1500V系统可优化功率跟踪策略,提升25年全生命周期发电量。研究揭示的首年快速退化现象,为逆变器自适应控制算法优化提供数据支撑,助力工商业光伏系统在极端气候下的可靠运行。