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光伏发电技术 ★ 5.0

高纬度地区双面光伏组件的实证分析:来自挪威实地实验室的性能洞察

Empirical analysis of bifacial photovoltaic modules in high-latitude regions: Performance insights from a field laboratory in Norway

作者 Berhane Darsene Dimd · Alfredo Sanchez Garci · Martin Bellman
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 325 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Empirical study of mono- and bifacial photovoltaic modules in high-latitude.
语言:

中文摘要

摘要 本文基于在挪威特隆赫姆一个户外实地实验室收集的数据,对高纬度地区双面光伏(bPV)组件的性能进行了全面的实证分析。研究探讨了bPV系统在低辐照、短日照时间、低太阳高度角以及极端天气条件等高纬度地区常见环境挑战下的运行动态。该研究评估了多种bPV配置的性能,包括东西(E–W)和南北(S–N)朝向的垂直安装组件、固定南倾安装方式,以及配备双轴跟踪系统的安装方式。主要研究结果表明,bPV系统采用混合朝向具有显著优势,可产生多个日发电峰值,更贴近实际用电负荷曲线。研究还表明,与单面光伏组件相比,bPV组件对辐照度变化表现出更强的响应性,尤其对水平散射辐照分量更为敏感,这一效应在垂直安装的bPV组件中尤为明显。发电量分析显示,春季气象条件有利于该地区光伏系统的性能表现。此外,在不同安装配置下,bPV组件均表现出不同程度地高于单面组件的性能比;然而,在倾斜安装方式中,积雪导致的发电量下降更为显著。本研究的结果有助于优化太阳高度角较低且积雪频繁地区的光伏系统设计,突显了垂直安装双面光伏组件的应用潜力。

English Abstract

Abstract This paper presents a comprehensive empirical analysis of bifacial photovoltaic (bPV) module performance in high-latitude regions, based on data collected from an outdoor field laboratory in Trondheim, Norway. It explores the operational dynamics of bPV systems under environmental challenges such as low irradiation, short daylight hours, low sun angles, and extreme weather conditions, all common in high-latitude regions. The study assesses the performance of various bPV configurations, including vertically oriented modules in east–west (E–W) and south–north (S–N) orientations, fixed south tilted orientations, and orientations equipped with a 2-axis tracking system. Key findings indicate the advantages of mixed orientations in bPV systems, resulting in multiple daily generation peaks that align more closely with consumption profiles. The study demonstrates that bPV modules exhibit a strong response to changes in irradiance than mono-facial modules, particularly to the diffused horizontal irradiance component. This effect is more observed in vertically oriented bPV modules. Yield analysis reveals that spring weather conditions favor PV performance in this region. Additionally, bPV modules show higher performance ratios than monofacial modules in various setups to a different extent, although snow-related reductions are more pronounced in tilted orientations. The results in this work contribute to the optimization of PV systems in regions where low sun angles and snow accumulation are prevalent, emphasizing the potential of vertically oriented bPV modules.
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SunView 深度解读

该研究揭示双面组件在高纬度地区的性能优势,对阳光电源SG系列逆变器的MPPT算法优化具有重要价值。垂直安装双面组件对漫射辐照度响应更强,需要逆变器具备更快速的功率跟踪能力和更宽的电压范围适应性。研究中多峰发电特性与负荷曲线匹配的发现,可指导PowerTitan储能系统在高纬度地区的容量配置策略。建议针对双面组件开发专用MPPT算法,并在iSolarCloud平台集成积雪影响的智能诊断功能,提升系统在极端气候下的发电效率和运维水平。