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光伏发电技术
★ 5.0
阐明双面光伏增益估算中的不确定性
Elucidating uncertainty in bifacial photovoltaic gain estimation
| 作者 | Magnus Moe Nygår · Marie Syre Wiig · Nathan Roosloot · Gaute Otnes · Mari B.Øgaar · Heine Nygard Riis · Erik Stensrud Marstein |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 292 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Bifacial gain is estimated with four different monofacial references in Norway. |
语言:
中文摘要
摘要 现场运行的双面光伏(PV)系统的双面增益通常通过将其能量产出与单面参考系统进行比较来估算。然而,这种估算方法依赖于所选的参考系统,因此可能带来显著的不确定性,因为这两种技术可能具有截然不同的特性。本研究探讨了在利用能量产出行时间序列数据估算双面增益时,此类差异的重要性。本文应用了一系列校正方法,以考虑安装容量以及对温度和辐照度响应的差异。分析基于在挪威一个22.6 kWp 地面固定倾角光伏系统上连续两年采集的数据,采用四种不同的单面技术作为参考系统,这些参考系统均以硅(Si)为有源材料,但具有不同的电池结构。在未进行任何校正的情况下,对于所考察的两年期,与最接近双面系统的单面技术相比,估算的双面增益为12.6%。在对辐照度进行校正后,该估计值上升至13.1%,进一步加入温度校正后增至14.4%。结果表明,所应用的校正措施将双面增益最小与最大估计值之间的范围从6.3个百分点缩小到3.5个百分点。尽管如果进一步考虑光谱响应和衰减特性的差异,该范围可能进一步缩小,但也应认识到,剩余的部分变异仍可能反映了该双面增益估算方法本身固有的测量不确定性。
English Abstract
Abstract The bifacial gain of fielded bifacial photovoltaic (PV) systems is commonly estimated by comparing the energy yield of the system with that of a monofacial reference. However, this approach is dependent on the selected reference, and can thus be associated with significant uncertainty, since the two technologies might have very different properties. This study investigates the significance of such differences when the bifacial gain is estimated from energy yield time series data. A series of corrections are applied to account for differences in installed capacity and responses with respect to temperature and irradiance. The analysis is carried out using data collected over two years from a 22.6 kW p ground-mounted fixed-tilt PV system in Norway using four different monofacial technologies as reference systems that all rely on Si as the active material but have different cell architectures. With no corrections applied, the estimated bifacial gain with the monofacial technology that most closely resembles the bifacial is determined to 12.6 % for the two-year period considered. The estimate increases to 13.1 % when correcting for irradiance and 14.4 % when also correcting for temperature. The results demonstrate that the applied corrections reduces the range between the smallest and largest estimate of the bifacial gain from 6.3 to 3.5 percentage points. Although it is possible that the range can be reduced further if differences in spectral response and degradation are accounted for, it should also be expected that some of the remaining variation reflects the measurement uncertainty inherent to this method of estimating the bifacial gain.
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SunView 深度解读
该研究对阳光电源SG系列双面组件逆变器系统具有重要价值。通过温度和辐照度修正,双面增益估算从12.6%提升至14.4%,误差范围从6.3%降至3.5%。建议在iSolarCloud平台集成精准增益算法,针对双面组件优化MPPT策略,结合实时温度补偿和辐照响应修正,提升发电量评估准确性。可为1500V大型地面电站的双面组件配置提供数据支撑,优化系统设计和投资回报预测模型。