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双面光伏系统性能评估改进模型的实验验证与应用
Experimental validation and application of an improved performance evaluation model for bifacial photovoltaic system
| 作者 | Shi-Jie Xub · Shuang-Ying Wuab · Lan Xiao · Pei-Tao Ruanb · Shang Gaob · Zhi-Li Chenc |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 399 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Propose an improved performance evaluation (IPE) model for BPV systems. |
语言:
中文摘要
摘要 随着双面光伏(BPV)产业的快速发展,系统性能评估变得日益重要。本研究提出了一种改进的双面光伏系统性能评估(IPE)模型,该模型耦合了光、热、电及外部环境因素,并在不同环境条件和最小地面距离(h_mgd)下进行了实验验证。首先,采用蒙特卡洛光线追踪方法模拟双面光伏系统中的光传播过程,以获得组件正面和背面的非均匀辐照度分布;随后,分别采用有限体积法和离散积分法计算系统的热学与电学性能;最后,通过实验对模型进行了验证。结果表明,在部分多云无风日以及晴天为主、少云且有风的日子里,双面光伏组件正面和背面辐照度的最大相对误差均低于13%,温度和瞬时电功率(P)的最大相对误差均小于12%。作为一项应用,IPE模型被用于评估不同h_mgd条件下双面光伏系统的性能,其最大相对误差亦低于12%。当h_mgd = 560 mm时,电功率P达到最大值。总体而言,本研究提出的用于双面光伏系统性能评估的IPE模型在不同环境条件和安装参数下均表现出良好的通用性和可信度。
English Abstract
Abstract With the rapid growth of bifacial photovoltaic (BPV) industry, system performance assessment becomes important. This study proposed an improved performance evaluation (IPE) model for BPV systems, which coupled light, heat, electricity and external environment, and was experimentally validated under different environmental conditions and minimum ground distances ( h mgd ). Firstly, Monte Carlo ray tracing method was used to simulate the light propagation in BPV system to obtain non-uniform irradiance distributions on front and rear sides of BPV panel. Then the thermal-electrical performance was calculated using finite volume method and discrete integral method, respectively. Finally, experimental validation was conducted. The results show that the maximum relative errors of irradiance on front and rear sides of BPV panel are below 13 %, while the maximum relative errors in temperature and instantaneous electric power ( P ) are under 12 % on both partly cloudy, windless day and sunny-dominated with few clouds, windy day. As an application, IPE model is used to evaluate BPV system performance under different h mgd , and the maximum relative error is also below 12 %. P reaches the maximum value at h mgd = 560 mm. Overall, IPE model proposed in this study for BPV performance evaluation has good generalizability and credibility under different environmental conditions and installation parameters.
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SunView 深度解读
该双面光伏性能评估模型对阳光电源SG系列逆变器和iSolarCloud平台具有重要应用价值。模型耦合光热电环境的IPE方法可优化MPPT算法,针对双面组件非均匀辐照特性实现更精准的功率追踪。研究揭示的最优离地高度(560mm)等安装参数,可集成到智能运维平台进行电站设计优化和发电量预测。模型12%以内的误差精度满足工程应用需求,可为阳光电源双面组件配套逆变器的控制策略提供理论支撑,提升系统整体发电效率和经济性评估准确度。