光伏项目的未来:从技术预测的角度回顾

IF 6.5 Q2 ENGINEERING, ENVIRONMENTAL
Leticia Pekk , Petar Sabev Varbanov , Ting Pan , Zoltan Weltsch , Bernadett Radli-Burjan , Andras Hary , Xue-Chao Wang
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引用次数: 0

摘要

农业光伏发电系统将光伏发电与农业生产相结合,产生协同效应,提高土地利用效率和环境可持续性。本文综述了农业光伏技术,以确定关键趋势和最有希望的未来研究和发展方向。所采用的方法包括选择和分析相关文献来源,并根据中欧和中国气候需要回答的基本问题对它们进行过滤。其中包括全球发展、当前应用和技术进步。分析表明,人们越来越关注系统设计、性能优化和作物兼容性。双面和光谱选择性光伏模块等创新技术提高了能源产量,同时为绿叶蔬菜和浆果等耐阴作物保持适宜的生长条件。分析证实了可持续发展效益(社会、经济和环境)的巨大潜力,并揭示了对重要绩效因素(包括位置和系统设计)进行系统调查的必要性。一个相对未被充分研究的因素是保护作物免受过度阳光照射,这一点已经变得越来越重要。系统操作的建模和优化也为决策者提供项目评估的有力工具。提出了指导未来研究和开发的路线图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Future of Agrivoltaic projects: A review from the technological forecasting perspective
Agrivoltaic systems integrate photovoltaic (PV) energy generation with agricultural production, creating synergies that enhance land-use efficiency and environmental sustainability. This article reviews agrivoltaic technologies to identify key trends and the most promising future research and development directions. The method applied involves selecting and analysing relevant literature sources and filtering them with regard to the essential questions that need to be answered for the climates of Central Europe and China. These include global development, current applications, and technological progress. The analysis reveals growing attention to system design, performance optimisation, and crop compatibility. Innovations such as bifacial and spectrally selective PV modules boost energy yields while maintaining suitable conditions for shade-tolerant crops like leafy greens and berries.
The analysis confirmed the high potential of sustainability benefits (societal, economic, and environmental) and revealed the need for systematic investigations of significant performance factors, including location and system design. A relatively underinvestigated factor is the protection of crops from excessive sunlight, which has become increasingly important. The modelling and optimisation of system operation is also necessary to provide decision-makers with robust tools for project assessment. A roadmap is proposed to guide future research and development.
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来源期刊
Cleaner Engineering and Technology
Cleaner Engineering and Technology Engineering-Engineering (miscellaneous)
CiteScore
9.80
自引率
0.00%
发文量
218
审稿时长
21 weeks
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