首页 | 官方网站   微博 | 高级检索  
     

基于物联网的温室农业种植环境监控系统研究
引用本文:沈艺敏.基于物联网的温室农业种植环境监控系统研究[J].农机化研究,2022,44(6):209-213.
作者姓名:沈艺敏
作者单位:南宁学院,南宁 530200
基金项目:广西高校中青年教师基础能力提升项目(2018KY0745)。
摘    要:为有效提升我国温室种植环境监控系统工作的智能化与精准化水平,以农业物联网为应用平台,针对监控系统进行设计研究.以温室种植的功能需求为切入点,采用物联网各层级分别构思、整体融合的方法,建立基于物联网的参数监测数学模型,并从软件设计与硬件配置两大维度构建完整的监控系统.试验结果表明:监控系统的网络数据丢包率可控制在0.70...

关 键 词:温室种植环境  监控系统  物联网  丢包率

Research on the Monitoring System of Greenhouse Agricultural Planting Environment Based on Internet of Things
Shen Yimin.Research on the Monitoring System of Greenhouse Agricultural Planting Environment Based on Internet of Things[J].Journal of Agricultural Mechanization Research,2022,44(6):209-213.
Authors:Shen Yimin
Affiliation:(Nanning University, Nanning 530200,China)
Abstract:In order to effectively improve the intelligent and accurate level of greenhouse agricultural planting environment monitoring system in China,the monitoring system was designed based on the application platform of the agricultural Internet of Things.Taking the functional requirements of greenhouse agriculture as the starting point,adopting the method of conception and integration of all levels of the Internet of things,a mathematical model of parameter monitoring based on the Internet of things was established,and the complete monitoring system was constructed from the two dimensions of software design and hardware configuration,then the test was carried out,which showed that the network data packet loss rate of the monitoring system could be controlled below 0.70%through the scientific integration of Internet of things technology,the systematic monitoring value of key parameters such as greenhouse air temperature,relative humidity and planting soil humidity had little error with the field measured value,which could be controlled below 2.50%,and the monitoring stability of the system could also be improved to more than 90.00%,all of the above could meet the monitoring function requirements as a whole and improve the monitoring efficiency significantly.It would be beneficial to further guide the deep optimization of the greenhouse agricultural planting and deep optimization of the facility agricultural equipment.
Keywords:greenhouse agricultural planting environment  agricultural Internet of Things  packet loss rate
本文献已被 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号