← 返回
光伏发电技术
★ 5.0
基于光谱分离和聚合物楔形光学器件的GaAs/Si异质结四端太阳能电池系统中的光收集分析:漫射侧向支撑的作用
Analysis of light collection in GaAs/Si HJT four-terminal solar cell system based on spectral splitting and polymeric wedged optics: a role for diffusive lateral supports
| 作者 | Mehdi Ahmadi · Roberto Pagano · Fabio Mater · Matteo Bonomoc · Simone Galliano · Iacopo Benesperi · Claudia Baroloc · Daniela Fontani · Floriana Morabito · Andrea Farina · Silvia Maria Pietralunga · Salvatore Antonino Lombardo |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 301 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A GaAs/Si HJT 4T solar cell system combining a custom made spectral splitter and a wave-guiding low-gain non-optical asymmetrical concentrator. |
语言:
中文摘要
摘要 本文提出了一种将GaAs与Si异质结电池结合光学元件构成的四端太阳能电池系统。该系统通过实现光学低倍非成像非对称聚光和光谱分离,以增强各子电池特定的能源转换效率,代表了一条克服传统光伏系统局限性并提升其效率的有前景的技术路径。光谱分离通过集成一种专门设计的具有导光能力和高透射率的聚合物电介质棱镜来实现,并结合定制的二向色镜,该二向色镜反射波长小于805 nm的光,而透射更长波长的光。为了优化系统性能,我们在受控的室内测试环境中,针对不同入射角度的光源以及不同颜色的侧盖条件,对各个组件及整个系统的光学性能进行了深入分析。此外,还在室外环境下,针对四种固定的系统朝向角度和不同的侧盖颜色情况开展了实地测试。四端(4T)系统的效率既在室内使用太阳模拟器进行研究,也在室外自然阳光条件下进行了评估。实验结果为提升系统性能提供了明确的指导,突显了光源入射角度和侧盖颜色在增强光收集方面的关键作用。
English Abstract
Abstract In this work a system combining a GaAs and Si heterojunction cells with optical components in a four-terminal solar cell configuration is presented. This system achieves optical low gain non-imaging asymmetric concentration and spectral splitting in order to enhance energy conversion specific to each cell, and represents a promising pathway to overcome the limitations and improve the efficiency of conventional photovoltaic systems. The split of the solar spectrum is realized by integrating into the system a specifically designed polymeric dielectric prism with light waveguide capability and high transmittance, coupled with a tailored dichroic mirror that reflects wavelengths shorter than 805 nm and transmits longer ones. In view of optimizing its performance, we critically investigate the optical performance of each component and of the system as a whole, at different light source incident angles and different colors of the side covers in a controlled indoor test environment. Moreover, outdoor tests at four fixed system orientation angles and for different side color cover cases have been performed. 4T system efficiency is studied both in indoor with a solar simulator and in outdoor under natural sunlight. The experimental results provide some clear indications to improve the system’s performance, highlighting the importance of the incident angle of the source and of color of the covers to boost light collection.
S
SunView 深度解读
该四端叠层光伏技术通过光谱分离和非成像聚光实现效率突破,对阳光电源SG系列逆变器的MPPT算法优化具有启发意义。研究中不同入射角和侧面颜色对光收集的影响,可指导iSolarCloud平台开发基于实时光谱条件的智能跟踪策略。GaAs/Si异质结的宽光谱利用思路,与公司在SiC/GaN宽禁带器件的研发方向契合,可探索将光谱分离理念应用于组件级功率优化器设计,提升复杂光照环境下的发电效率和系统稳定性。