农用无人驾驶航空器法规与标准发展OA
Development of regulations and standards for agricultural unmanned aerial vehicles
农用无人驾驶航空器作为低空经济在农业农村领域的核心载体,近年来呈现爆发式增长态势,已成为推动农业现代化和乡村振兴的重要技术力量.产业规模的急剧扩张与技术应用的快速迭代,而配套法规与标准建设仍存在滞后性.本文在梳理国内外农用无人驾驶航空器法规与标准发展的基础上,系统分析了空域管理、适航审定、人员资质等法规框架构成,以及国家标准、行业标准、地方标准和团体标准四级标准框架的建设现状.研究表明,我国已初步形成以《无人驾驶航空器飞行管理暂行条例》为上位法的法规框架和以《低空经济标准体系建设指南》为顶层设计的标准架构,但在应用场景覆盖、部件/分系统要求和方法标准配套等方面仍存在短板.面向未来,应推进基于运行风险的分类分级管理、加速标准体系的场景拓展与方法完善、构建数字化智能监管体系,为农业低空经济的高质量发展提供制度保障.
As a core carrier of the low-altitude economy in the agricultural and rural sectors,agricultural unmanned aircraft have experienced explosive growth in recent years and have become a vital technological force driving agricultural modernization and rural revitalization.While the industrial scale has expanded dramatically and technological applications have undergone rapid iteration,the development of supporting regulations and standards has lagged behind.Based on a review of the development of domestic and international regulations and standards for agricultural unmanned aerial vehicles,this paper systematically analyzes the legal framework for airspace management,airworthiness certification,and personnel qualifications-as well as the current status of the four-tier standards framework including national standards,industry standards,local standards,and group standards.The findings indicate that China has initially established a regulatory framework with the Interim Regulation on the Flight Management of Unmanned Aircraft as the overarching legislation,and a standards architecture with the Guidelines for the Construction of the Low-Altitude Economy Standards System as the top-level design.However,shortcomings remain in areas such as application scenario coverage,component and subsystem requirements,and supporting methodological standards.Looking into the future,efforts should be directed toward advancing risk-based classification and hierarchical management,accelerating the expansion of application scenarios and the refinement of methods within the standards system,and building a digital intelligent supervision system,thereby providing institutional safeguards for the high-quality development of the agricultural low-altitude economy.
薛新宇;顾伟;兰玉彬;孔伟;孙竹;徐阳
农业农村部南京农业机械化研究所,江苏 南京,210014||农业农村部现代农业装备重点实验室,江苏 南京,210014||农业农村部航空植保重点实验室,河南 安阳,455000农业农村部南京农业机械化研究所,江苏 南京,210014||农业农村部现代农业装备重点实验室,江苏 南京,210014||农业农村部航空植保重点实验室,河南 安阳,455000农业农村部航空植保重点实验室,河南 安阳,455000||华南农业大学人工智能与低空技术学院,广东 广州,510642农业农村部南京农业机械化研究所,江苏 南京,210014||农业农村部现代农业装备重点实验室,江苏 南京,210014||农业农村部航空植保重点实验室,河南 安阳,455000农业农村部南京农业机械化研究所,江苏 南京,210014||农业农村部现代农业装备重点实验室,江苏 南京,210014农业农村部南京农业机械化研究所,江苏 南京,210014||农业农村部现代农业装备重点实验室,江苏 南京,210014
农业科技
农用无人驾驶航空器法规标准低空经济精准农业
agricultural unmanned aerial vehiclesregulationsstandardslow-altitude economyprecision agriculture
《智能化农业装备学报(中英文)》 2026 (2)
1-10,10
国家重点研发计划(2023YFD2000200)江苏省前沿技术研发计划(现代农业)项目(BF2025309)National Key R&D Program of China(2023YFD2000200)Jiangsu Frontier Technology R&D Program(Modern Agriculture)Project(BF2025309)
评论