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Smart Agriculture ›› 2024, Vol. 6 ›› Issue (6): 44-62.doi: 10.12133/j.smartag.SA202411017

• 专题--农业知识智能服务和智慧无人农场(上) • 上一篇    下一篇

特色农产品设施环境下品质智能管控技术研究现状与展望

郭威1,2,3,4(), 吴华瑞1,2,3,4, 郭旺1,2,3,4, 顾静秋1,2,3,4, 朱华吉1,2,3,4()   

  1. 1. 国家农业信息化工程技术研究中心,北京 100097,中国
    2. 北京市农林科学院信息技术研究中心,北京 100097,中国
    3. 农业农村部数字乡村技术重点实验室,北京 100097,中国
    4. 农业农村部农业信息技术重点实验室,北京 100097,中国
  • 收稿日期:2024-11-08 出版日期:2024-11-30
  • 基金项目:
    国家重点研发计划(2023YFD1600304); 北京市农林科学院改革与发展项目
  • 作者简介:
    郭 威,研究方向为农业大数据与人工智能。E-mail:
  • 通信作者:
    朱华吉,博士,研究员,研究方向为农业大数据与人工智能。E-mail:

Research Status and Prospect of Quality Intelligent Control Technology in Facilities Environment of Characteristic Agricultural Products

GUO Wei1,2,3,4(), WU Huarui1,2,3,4, GUO Wang1,2,3,4, GU Jingqiu1,2,3,4, ZHU Huaji1,2,3,4()   

  1. 1. National Engineering Research Center for Information Technology in Agriculture, Beijing 100097, China
    2. Information Technology Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China
    3. Key Laboratory of Digital Village Technology, Ministry of Agriculture and Rural Affairs, Beijing 100097, China
    4. Key Laboratory of Agri-Informatics, Ministry of Agriculture and Rural Affairs, Beijing 100097, China
  • Received:2024-11-08 Online:2024-11-30
  • Foundation items:The National Key Research and Development Program of China(2023YFD1600304); Reform and Development Project of Beijing Academy of Agriculture and Forestry Sciences
  • About author:
    GUO Wei, E-mail:
  • Corresponding author:
    ZHU Huaji, E-mail:

摘要:

[目的/意义] 针对中国中西部特色农产品在设施环境生产过程对品质影响要素监测手段缺乏、智能化管控能力薄弱、品质控制要素耦合关系不明、系统化应用程度低的问题,对现有的设施智能监测、智能管控、平台构建技术进行探索,通过物联网、云平台,以及新一代人工智能技术的应用,为特色农产品全生育期的智能化品质管控体系构建和应用提供依据。 [进展] 以特色羊肚菌和番茄的外观、口感、产量三类品质为管控目标,在品质调控数据采集方面介绍了视频监控、环境监测、生理表型数据采集设备,以及轨道式、轮式巡检机器人,提供稳定可靠的图像、视频、监测数据采集手段;在生长过程调控方面,分别从环境监测调控和肥水灌溉投入品调控阐释了当前的做法,提出了能够针对品质进行多要素耦合全生育期的管控方法;介绍了品质智能管控系统,以及多个生产环节的应用,采用云边端一体化架构为获取的多模态数据以及多要素耦合模型面向多种生产场景提供精准适配的应用和服务。 [结论/展望] 对比特色羊肚菌和番茄的智能化管控现状,番茄整体技术体系更为成熟,羊肚菌产业可以结合自身的生产过程根据技术的需要进行技术迁移,对严苛光照、稳定的高湿低温等个性化要求进行模型定制,面向中西部大部分特色农产品品控宜采用通用型的多要素耦合模型根据场景特性进行参数、模型局部迁移和微调的方式适配。未来的发展趋势呈现设备设施轻简化、智能技术场景化、服务模式多样化、品质管控在线化、数智生产规模化、数据要素价值化,有效利用智能装备和数据要素的优势是将来激发新质生产力的必然趋势。

关键词: 特色农产品, 多要素耦合, 智能管控模型, 多模态知识图谱, 农业大模型, 新质生产力

Abstract:

[Significance] In view of the lack of monitoring means of quality influence factors in the production process of characteristic agricultural products with in central and western regions of China, the weak ability of intelligent control, the unclear coupling relationship of quality control elements and the low degree of systematic application, the existing technologies described such as intelligent monitoring of facility environment, growth and nutrition intelligent control model, architecture of intelligent management and control platform and so on. Through the application of the Internet of Things, big data and the new generation of artificial intelligence technology, it provides technical support for the construction and application of intelligent process quality control system for the whole growth period of characteristic agricultural products. [Progress] The methods of environmental regulation and nutrition regulation are analyzed, including single parameters and combined control methods, such as light, temperature, humidity, CO2 concentration, fertilizer and water, etc. The multi-parameter coupling control method has the advantage of more comprehensive scene analysis. Based on the existing technology, a multi-factor coupling method of integrating growth state, agronomy, environment, input and agricultural work is put forward. This paper probes into the system architecture of the whole process service of quality control, the visual identification system of the growth process of agricultural products and the knowledge-driven agricultural technical service system, and introduces the technology of the team in the disease knowledge Q & A scene through multi-modal knowledge graph and large model technology. [Conclusions and Prospects] Based on the present situation of the production of characteristic facility agricultural products and the overall quality of farmers in the central and western regions of China, it is appropriate to transfer the whole technical system such as facility tomato, facility cucumber and so on. According to the varieties of characteristic agricultural products, cultivation models, quality control objectives to adapt to light, temperature, humidity and other parameters, as well as fertilizer, water, medicine and other input plans, a multi-factor coupling model suitable for a specific planting area is generated and long-term production verification and model correction are carried out. And popularize it in a wider area, making full use of the advantages of intelligent equipment and data elements will promote the realization of light simplification of production equipment, scene of intelligent technology, diversification of service models, on-line quality control, large-scale production of digital intelligence, and value of data elements, further cultivate facilities to produce new quality productivity.

Key words: characteristic agricultural products, multi-factor coupling, intelligent management and control model, multimodal knowledge graph, agricultural large model, new quality productivity

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