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光伏发电技术 ★ 5.0

单轴跟踪器与不耐阴作物在农光系统中土地生产力的表现

Performance of land productivity with single-axis trackers and shade-intolerant crops in agrivoltaic systems

作者 Djaber Berrian · Gaurang Chhapia · Johannes Linder
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 384 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Innovative framework (PowerCrop) integrates Wofost and bifacial VF models for agrivoltaics design.
语言:

中文摘要

我们开发了一种综合了作物生长模型与光伏建模的全面性工具,旨在优化农光(APV)跟踪系统的设计。利用该工具,我们评估了德国一个大规模双面APV单轴跟踪系统的土地生产力。我们模拟了在不同跟踪器配置(包括阵列间距、离地高度和方位角)下耐阴作物(马铃薯)与不耐阴作物(玉米)的生长情况。研究结果揭示了跟踪器阵列间距与不同作物土地生产力之间存在明确的关系,其差异取决于作物对遮荫的耐受能力。有趣的是,提高跟踪器安装高度并不能提升土地生产力;相反,它削弱了土地用于双重用途的吸引力。然而,仅调整跟踪器的朝向即可显著改善土地生产力。在光伏组件密度为40%的APV跟踪系统下,相较于传统光伏系统,我们观测到能源产量下降了42%。此外,作物产量也出现显著损失,其中马铃薯减产32%,玉米减产达66%。最后,我们提出了针对耐阴与不耐阴作物的简化作物产量模型,这些模型可无缝集成到现有的光伏设计软件中,为农光系统的优化提供实用的指导依据。

English Abstract

Abstract We developed a comprehensive tool that integrates both crop and photovoltaic modeling, aiming to optimize the design of agrivoltaic (APV) tracking systems. Using this tool, we evaluated the land productivity of a large-scale bifacial APV system with single-axis trackers in Germany. We simulated the growth of shade-tolerant (potato) and intolerant crops (maize) across various tracker configurations, including row spacing , clearance height, and azimuth. Our findings reveal a clear relationship between tracker row spacing and land productivity across different crops, with variations depending on their shade tolerance . Interestingly, increasing tracker height does not enhance land productivity; instead, it diminishes the attractiveness of utilizing land for dual purposes. However, adjusting only the tracker orientation noticeably improves land productivity. Under APV tracking systems with 40% PV module density, we observed a 42% loss in energy production compared to traditional PV systems. Additionally, there were significant crop production losses, with potatoes experiencing a 32% reduction and maize suffering an 66% decrease. Finally, we introduced simplified crop yield models tailored for shade-tolerant and intolerant crops, which can be seamlessly integrated with existing PV design software, offering practical insights for APV system optimization.
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SunView 深度解读

该农光互补追踪系统研究对阳光电源SG系列逆变器及智能运维方案具有重要参考价值。研究揭示单轴追踪系统在40%组件密度下能量损失42%,这为我们优化1500V系统的MPPT算法提供了场景依据。针对双面组件追踪应用,可结合iSolarCloud平台开发农光互补专用控制策略,通过动态调整追踪角度平衡发电与作物生长需求。研究中的方位角优化发现,启发我们在SG逆变器中集成农光场景模式,根据作物耐荫性自适应调节追踪参数,提升土地综合生产力,为农光互补项目提供差异化解决方案。