中国农业气象 ›› 2026, Vol. 47 ›› Issue (2): 306-319.doi: 10.3969/j.issn.1000-6362.2026.02.012

• 农业气象灾害栏目 • 上一篇    下一篇

基于专利分析的全球农业气象灾害防控技术发展

张丽玮,王雨晴,刘布春,丁美荣,陈迪,刘恩科   

  1. 1.首都经济贸易大学管理工程学院,北京 100070;2.中国农业科学院农业环境与可持续发展研究所/农业水资源高效利用全国重点实验室,北京 100081;3.应急管理部宣教中心,北京 100013
  • 收稿日期:2025-10-20 出版日期:2026-02-20 发布日期:2026-02-10
  • 作者简介:张丽玮,E-mail:zhangliwei@cueb.edu.cn
  • 基金资助:
    国家重点研发计划专项课题(2023YFD1900503);“十五五”农业农村发展规划前期研究课题(B020101);国家社会科学基金项目(15CTQ031)

Development of Global Agrometeorological Disaster Prevention and Control Technology Based on Patent Analysis

ZHANG Li-wei, WANG Yu-qing, LIU Bu-chun, DING Mei-rong, CHEN Di, LIU En-ke   

  1. 1. School of Management and Engineering, Capital University of Economics and Business, Beijing 100070, China; 2. Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences/State Key Laboratory of Efficient Utilization of Agricultural Water Resources, Beijing 100081; 3. Publicity and Education Center of Ministry of Emergency Managements, Beijing 100013
  • Received:2025-10-20 Online:2026-02-20 Published:2026-02-10

摘要:

全球气候变化引发极端气象灾害频发的背景下,准确把握农业气象灾害防控技术的发展及演变,是构建更具韧性防灾减灾体系的关键。本文基于1997120254月全球927项农业气象灾害防控技术的公开专利,利用技术生命周期分析、社会网络分析及主题建模等方法,揭示该领域技术的发展趋势、竞争与合作格局以及创新演进路径。结果表明:农业气象灾害防控技术自2014年进入快速成长期,预计未来仍将保持增长态势。中国是该领域的主要研发国家,尤其在农业气象灾害防控技术与智能信息和通信技术的交叉领域技术研发较为突出;美国、韩国和日本在专利申请规模上相对放缓。从研发合作方面看,跨机构、跨部门及跨国界的协同研发尚未形成规模效应;研发主体结构呈典型的“学术主导型”,以高校/研究院为主(占比53.61%),技术型研发公司参与度相对较低(26.97%),一定程度上制约了创新成果在实际生产中的转化与应用。在技术演化路径上,该领域技术从早期的化学调控与基础监测逐步演进为灾前预警、灾中调控与灾后评估的全链条技术体系,重点包括气象灾害监测预警体系、作物抗逆性改良技术以及灾后评估机制。综上,该技术领域目前处于活跃的发展态势,未来应进一步加强产学研融合与协作网络构建,共同推动构建多方位智慧农业管理系统的研发和农业气象灾害防控技术的创新,为全球农业可持续发展提供支撑。

关键词: 农业气象灾害, 专利分析, 技术演进, BERTopic模型, 社会网络分析, 智慧芽

Abstract:

In the context of global climate change leading to frequent extreme meteorological disasters, an accurate understanding of the development and evolution of agrometeorological disaster prevention and control technology is crucial for the construction of more resilient disaster prevention and mitigation systems. Based on 927 publicly available patents related to global agrometeorological disaster prevention and control technology from January 1997 to April 2025, this study employed methods such as technology life cycle analysis, social network analysis and topic modeling to reveal development trends, competition and cooperation patterns and innovation evolution path in this field. The results indicated that agrometeorological disaster prevention and control technologies had entered a phase of rapid growth phase since 2014 and are expected to maintain an upward trajectory in the future. China stood out as a leading research and development hub in this field, particularly excelling in the intersection of agrometeorological disaster prevention and control technologies with information and communication technologies. In contrast, the scale of patent applications in the United States, South Korea and Japan had slowed relatively in recent years. In terms of research and development collaboration, cross−institutional, cross−sectoral and cross−national cooperative efforts had yet to achieve significant scale. The research and development ecosystem was characterized by a typical "academia−dominant" structure, with universities and research institutes accounting for 53.61%, while corporate participation remained relatively low at 26.97%. This imbalance, to some extent, hindered the transformation and application of innovative outcomes in practical production. Though technological evolution, the field had evolved from early chemical regulation and basic monitoring to a comprehensive chain of technologies covering pre−disaster warning, in−disaster regulation and post−disaster assessment. Key highlights included meteorological disaster monitoring and warning systems, crop stress resistance improvement technologies and post−disaster assessment mechanisms. In conclusion, this field of technology is currently experiencing a period of active development. In the future, it is essential to further strengthen industry−academia research integration and build collaborative networks. Together, these efforts will drive the development of comprehensive smart agricultural management systems and innovation in agrometeorological disaster prevention and control technologies, thereby supporting global agricultural sustainable development.

Key words: Agrometeorological disaster, Patent analysis, Technology evolution, BERTopic model, Social network analysis, Patsnap