Research Progress in Facility Agriculture and Lighting by Bibliometric Analysis Based on CiteSpace

Zhengyu Xia, Zhanming Li
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Abstract

Given the pressures of internation-al market competition, the dual constraints of domestic resources and the environment, and the uncertainties posed by climate change, bolstering agricultural infra-structure construction is a realistic demand and a crucial approach for implementing emerging grain security strat-egies, particularly in developing countries. Facility agriculture is characterized as a modern agricultural production mode that improves or creates favorable environmental conditions within a specific locality. With the rapid expansion of large-scale facility agriculture, there has been an increased demand for various types of energy, including electricity, gas, cold, and heat. Agricultural lighting equipment used in facility agriculture is a modern agricultural technique that applies engineering technology to regulate light supplementation in the production process. Facility lighting offers several advantages over traditional methods, such as higher photovoltaic conversion efficiency, adjustable spectrum, high photosynthetic efficiency, energy efficiency, environmental friendliness, long lifespan, monochromatic light, cold light source, and compact size. Promoting national food security, carbon neutrality, returning farmland to forests, and implementing low-carbon green agricultural policies all contribute to the favorable use of facility agriculture lighting. This study aims to provide a systematic summary of the relevant research conducted in the past decade using Citespace software. The advantage of facility agriculture for carbon sequestration capacity can effectively reduce net carbon emissions from facility agricultural production activities. In addition, the combination of agriculture and the Internet of Things can effectively improve agricultural production efficiency and economic returns. Combining artificial intelligence and other technologies with facility agriculture engineering, based on multi-source data fusion, intelligent early warning for facility agriculture energy internet can be used to prevent agricultural meteorological disasters. More importantly, it helps maintain global food security, eliminate hunger, and reduce economic inequality. The findings of this study will contribute to a deeper understanding of agricultural lighting equipment, serving as a new theoretical foundation for achieving agricultural emission reduction targets and promoting agricultural technical cooperation.
通过基于 CiteSpace 的文献计量分析了解设施农业和照明领域的研究进展
面对国际市场竞争的压力、国内资源环境的双重约束以及气候变化带来的不确定性,加强农业基础设施建设是实施新兴粮食安全战略的现实需求和重要途径,在发展中国家尤其如此。设施农业是指在特定区域内改善或创造良好环境条件的现代农业生产模式。随着大规模设施农业的迅速发展,对电、气、冷、热等各类能源的需求也随之增加。设施农业中使用的农业照明设备是一种现代农业技术,它应用工程技术来调节生产过程中的光照补充。与传统方法相比,设施照明具有光电转换效率高、光谱可调、光合效率高、节能、环保、寿命长、单色光、冷光源、体积小等优点。促进国家粮食安全、碳中和、退耕还林、实施低碳绿色农业政策等都有助于设施农业照明的推广应用。本研究旨在利用 Citespace 软件对过去十年间开展的相关研究进行系统总结。设施农业的固碳能力优势可有效减少设施农业生产活动的净碳排放量。此外,农业与物联网的结合可以有效提高农业生产效率和经济收益。将人工智能等技术与设施农业工程相结合,基于多源数据融合的设施农业能源互联网智能预警,可用于预防农业气象灾害。更重要的是,它有助于维护全球粮食安全、消除饥饿、减少经济不平等。本研究的结论将有助于加深对农业照明设备的理解,为实现农业减排目标和促进农业技术合作提供新的理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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