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光伏发电技术 ★ 5.0

带水平单轴跟踪器的双面光伏浮体系统的实验与模拟性能评估

Experimental and Simulated Performance Evaluation of Bifacial Photovoltaic Floating System With a Horizontal Single-Axial Tracker

作者 Amr Osama · Giuseppe Marco Tina · Gaetano Mannino · Alessio Vincenzo Cucuzza · Andrea Canino · Fabrizio Bizzarri
期刊 IEEE Journal of Photovoltaics
出版日期 2025年3月
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 漂浮式光伏系统 水平轴跟踪双面光伏系统 实验评估 模拟结果 性能验证
语言:

中文摘要

摘要:光伏产业的迅速扩张得益于成本的大幅降低。然而,鉴于光伏发展对土地面积的需求,利用水面建设漂浮式光伏(FPV)系统是一个颇具前景的解决方案。为提高这些系统的成本效益,可以采用双面组件和跟踪系统。虽然众多实验研究已经对固定配置的漂浮式光伏系统性能进行了评估,但漂浮式跟踪配置仍未得到充分研究。此外,各种模拟工具为不同配置提供了见解,但它们不同的假设往往导致结果不一致。本研究重点对水平轴跟踪双面漂浮式光伏(HT - bFPV)系统进行实验评估。在意大利卡塔尼亚的“恩利创新中心与实验室”的漂浮式光伏试验台上,对HT - bFPV系统进行了为期一年的监测。将实验结果与使用两款软件工具的模拟结果进行对比,以评估它们在计算HT - bFPV系统性能方面的准确性。结果显示,HT - bFPV系统的组件温度分别比系统顾问模型和光伏系统软件计算的温度低3°C至6°C。年参考发电量为2139千瓦时/千瓦,最终发电量为1801千瓦时/千瓦。HT - bFPV系统的年性能比为0.86,经温度调整后提高了1.8%。模拟结果与实验数据高度吻合,验证了该系统的性能。此外,经证实,与类似的固定系统相比,HT - bFPV系统最多可多产生13.3%的电能,且在高纬度地区具有更大的潜力。

English Abstract

The rapid expansion of photovoltaics is driven by significant reduction in costs. However, given the surface requirements for photovoltaic development, utilizing water surfaces for floating photovoltaic (FPV) systems presents a promising solution. To enhance the cost-effectiveness of these systems, bifacial modules and tracking systems can be employed. While numerous experimental studies have evaluated the performance of fixed-configuration FPVs, floating tracking configurations remain underexplored. In addition, various simulation tools offer insights into different configurations, but their different assumptions often yield inconsistent results. This study focuses on the experimental evaluation of a horizontal axis tracking bifacial FPV (HT-bFPV) system. Over one year, the HT-bFPV system was monitored at the FPV test bed of “Enel Innovation Hub & Lab” in Catania, Italy. The experimental results were compared with simulated outcomes using two software tools, to assess their precision in calculating the HT-bFPV performances. The results reveal that the module temperature of the HT-bFPV system is 3 °C to 6 °C lower than the temperatures calculated by System Advisor Model and Photovoltaic system software, respectively. The yearly reference yield of 2139 kWh/kW produced a final yield of 1801 kWh/kW. The yearly performance ratio of the HT-bFPV system was 0.86, which improved by 1.8% when adjusted for temperature. The simulation results closely matched the experimental data, validating the system's performance. Furthermore, it was confirmed that the HT-bFPV system can produce up to 13.3% more energy with more potential in sites with higher latitudes compared with a similar fixed system.
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SunView 深度解读

该双面光伏浮体跟踪系统研究对阳光电源SG系列光伏逆变器和浮体光伏解决方案具有重要应用价值。研究验证的双面增益特性和水面反射优化可指导SG逆变器的MPPT算法升级,针对双面组件背面辐照不均匀特性优化多路MPPT策略。水平单轴跟踪系统的动态发电特性为逆变器宽电压范围设计和动态响应优化提供依据。浮体环境的高湿度、水面反射等特殊工况要求逆变器具备更高防护等级和散热能力,可推动IP68防护和液冷技术在浮体专用逆变器中的应用。该研究的仿真验证方法可集成至iSolarCloud平台,提升浮体电站的设计仿真和智能运维能力,为阳光电源拓展水面光伏市场提供技术支撑。