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王晓丽,王彩虹,薛晓娟,等.北京市畜牧业生物安全智能监管系统(生猪)技术体系架构[J].农业工程,2024,14(3):23-26. DOI: 10.19998/j.cnki.2095-1795.2024.03.004
引用本文: 王晓丽,王彩虹,薛晓娟,等.北京市畜牧业生物安全智能监管系统(生猪)技术体系架构[J].农业工程,2024,14(3):23-26. DOI: 10.19998/j.cnki.2095-1795.2024.03.004
WANG Xiaoli,WANG Caihong,XUE Xiaojuan,et al.Technical system architecture of Beijing animal husbandry biosafety intelligent supervision system (Pig)[J].Agricultural Engineering,2024,14(3):23-26. DOI: 10.19998/j.cnki.2095-1795.2024.03.004
Citation: WANG Xiaoli,WANG Caihong,XUE Xiaojuan,et al.Technical system architecture of Beijing animal husbandry biosafety intelligent supervision system (Pig)[J].Agricultural Engineering,2024,14(3):23-26. DOI: 10.19998/j.cnki.2095-1795.2024.03.004

北京市畜牧业生物安全智能监管系统(生猪)技术体系架构

Technical System Architecture of Beijing Animal Husbandry Biosafety Intelligent Supervision System (Pig)

  • 摘要: 面对非洲猪瘟的影响,北京市在积极恢复生猪产能的同时,开发建设北京市畜牧业生物安全智能监管系统(生猪),集合人工智能、结构化画面识别、知识库规则引擎等技术,通过感知设施对生猪养殖、屠宰环节进行监控,利用人工智能进行数据分析,进一步加强生物安全监管力度,降低生猪产业的疫情风险。阐述了北京市畜牧业生物安全智能监管系统(生猪)技术设计原则,概括总结了建设系统采用的核心技术和系统技术架构等。

     

    Abstract: In the face of impact of African swine fever, while actively restoring pig production capacity, an intelligent biosafety supervision system(pig)for animal husbandry was developed, which integrating artificial intelligence, structured image recognition, knowledge base rule engine and other technologies.Through perception facilities, entire pig breeding and slaughtering process was monitored, and artificial intelligence was used for data analysis to further strengthen biosafety supervision and reduce epidemic risk of the pig industry.Technical design principles of Beijing animal husbandry biosafety intelligent supervision system(pig)were elaborated, and core technologies and system technology architecture adopted in construction of the system were summarized.

     

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