← 返回
光伏发电技术
★ 5.0
一种新型微聚光光伏模块概念的功率评级及运行影响
Power Rating of a Novel Micro-CPV Module Concept and Operational Influences
| 作者 | Elisa Kaiser · Maike Wiesenfarth · Marc Steiner · Gerald Siefer · Peter Nitz · Peter Schöttl |
| 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 | 微聚光光伏技术 模块性能 户外条件 效率 低成本制造 |
语言:
中文摘要
微聚光光伏(micro - CPV)技术有潜力推动能源转型,通过将极小的碳足迹和能源需求与低平准化电力成本相结合,促进向更可持续和可再生能源的转变。微聚光光伏模块利用直射辐照度将阳光转化为电能,这需要精确的太阳跟踪。这些模块的性能受其朝向太阳的对准情况以及户外运行时的环境条件影响。光谱条件、环境温度、辐照度和风速会影响多结太阳能电池的电流 - 电压特性以及透镜的光学行为。我们开发了一种新颖的微聚光光伏模块概念,该概念基于低成本和高通量的制造工艺。在这项工作中,我们展示了一个采用10×6阵列配置(孔径面积为205平方厘米,属于子模块类别)的原型模块。我们讨论了一年多来记录的户外测量数据以及各种户外条件的影响。在IEC62670 - 3功率评级中,确定该模块在聚光器标准测试条件和聚光器标准运行条件下的效率分别为36.0 ± 0.4%和33.0 ± 0.4%。在光谱中红光更丰富的情况下,即光谱匹配比$SMR_{12}$为0.94 ± 0.03时,可达到比标准条件下约高0.4%的最高效率。通过在不同温度下的测量,我们发现平凸型硅胶 - 玻璃复合主透镜的温度依赖性可忽略不计。本文还讨论了模块性能在一年中的变化情况。尽管采用了市售的低成本组件和高通量工艺,但在运行的第一年未观察到明显的性能退化。
English Abstract
Micro-concentrating photovoltaic (micro-CPV) technology has the potential to contribute to the energy transition, facilitating the shift toward more sustainable and renewable energy sources by combining minimal carbon footprint and energy demand with low levelized cost of electricity. Micro-CPV modules utilize direct normal irradiance to convert sunlight into electrical power, necessitating precise solar tracking. The performance of these modules is influenced by their alignment toward the sun and prevailing outdoor conditions during outdoor operation. The spectral conditions, along with the ambient temperature, irradiance, and wind speed, influence the current–voltage characteristics of multijunction solar cells and the optical behavior of the lens. We have developed a novel micro-CPV module concept, which is based on low-cost and high-throughput manufacturing processes. In this work, we present a prototype module in a 10 × 6 array configuration (205-cm2 aperture area, submodule class). We discuss outdoor measurements recorded over one year and the influences of various outdoor conditions. In an IEC62670-3 power rating, efficiencies of 36.0 ± 0.4% and 33.0 ± 0.4% at concentrator standard test conditions and concentrator standard operating conditions, respectively, are determined. Highest efficiencies, about 0.4% higher than at standard conditions, were attained at a more red-rich spectrum, namely at a spectral matching ratio SMR12 of 0.94 ± 0.03. Using measurements at different temperatures, we show that the planoconvex silicone-on-glass primary lens has a negligible temperature dependence. Changes in the module performance over the course of one year are discussed. Despite employing commercially available low-cost components and high-throughput processes, no significant degradation was observed during the first year of operation.
S
SunView 深度解读
该微聚光光伏模块的功率评级研究对阳光电源SG系列光伏逆变器产品具有重要参考价值。研究中的非均匀辐照分析可优化MPPT算法,提升CPV系统下的功率跟踪精度;温度影响与热管理研究可改进逆变器散热设计,增强高温环境适应性;入射角依赖性分析有助于优化跟踪系统控制策略。该标准化功率评级模型可为阳光电源开发CPV专用逆变器提供技术依据,特别是在直射辐射丰富的西北地区应用场景中,结合iSolarCloud平台实现CPV系统的智能诊断与性能优化,拓展高效光伏发电技术路线。