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基于物联网技术的设施作物环境智能监控系统
引用本文:臧贺藏§,王言景§,张杰,胡 峰,赵 晴,李国强,郑国清. 基于物联网技术的设施作物环境智能监控系统[J]. 中国农业科技导报, 2016, 18(5): 81-87. DOI: 10.13304/j.nykjdb.2016.263
作者姓名:臧贺藏§  王言景§  张杰  胡 峰  赵 晴  李国强  郑国清
作者单位:1.河南省农业科学院农业经济与信息研究所, 郑州 450002; 2.郑州师范学院初等教育学院, 郑州 450044
基金项目:河南省重大科技专项(121100110900);河南省重点科技攻关计划项目(162102210378);河南省农业科技创新项目(豫财贸[2014]120号)资助。
摘    要:为了提高设施作物生产管理的智能化水平,结合设施作物监管需求,基于物联网技术,研制了设施作物智能监测系统。在设施作物生长发育过程中,该系统可以全程对设施作物进行实时监控,实现了温室内光、温、气等环境参数和生产现场远程视频的实时监测,还可以远程自动控制湿帘风机、喷淋滴灌、内外遮阳、加温补光等设备,从而实现了温室环境的自动调控,提高了获取数据的效率和准确性。通过在实际生产中应用,该系统具有功耗低、成本低、扩展灵活、性能稳定等优点,说明了该系统设计的合理性、稳定性与实用性。该系统的构建和运行,为设施作物长势进行实时跟踪监测与综合分析以及管理提供决策支持。

关 键 词:物联网  设施作物  环境  智能监控  数据采集  

The Intelligent Monitoring System for Environment of Facility Crop Based on Internet of Things Technology
ZANG He-cang§,WANG Yan-jing§,ZHANG Jie,HU Feng,ZHAO Qing,LI Guo-qiang,ZHENG Guo-qing. The Intelligent Monitoring System for Environment of Facility Crop Based on Internet of Things Technology[J]. Journal of Agricultural Science and Technology, 2016, 18(5): 81-87. DOI: 10.13304/j.nykjdb.2016.263
Authors:ZANG He-cang§  WANG Yan-jing§  ZHANG Jie  HU Feng  ZHAO Qing  LI Guo-qiang  ZHENG Guo-qing
Affiliation:1.Agricultural Economy and Information Research Institution, Henan Academy of Agricultural Sciences, Zhengzhou 450002;2. Department of Elementary Education, Zhengzhou Normal University, Zhengzhou 450044, China
Abstract:In order to improve intelligent management level for facility crop production and according to the need of facility crop monitoring and management, this paper studied and developed an environment intelligent monitoring system for facility crop based on internet of things technology. In the process of facility crop growth and development, this system could carry out real-time monitoring on facility crop in the whole course, and realize on-line distance-vision monitoring in greenhouse environmental parameters including light, temperature, gas etc.. Furthermore, it could also control the remote automation equipments such as wet curtain fan, spray irrigation,internal and external shading, heating fill light and etc., so as to implement the automatic control of greenhouse environment, improve the efficiency and accuracy of data acquisition. Through the application of practical production, this system was proved to have the advantages of low energy consumption, low cost, flexible expansion, stable performance, etc., indicating its rationality, stability and practicality. The construction and running of this system provided decision support for real-time tracking monitoring, comprehensive analysis and successful management on facility crop growth.
Keywords:internet of things  facility crop  environment  intelligent monitoring  data acquisition  
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