首页|基于物联网的农田环境监测系统实现

基于物联网的农田环境监测系统实现

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中国作为传统的农业大国,农业的发展是国民发展的经济基础.随着农业产业的发展和城市化进程,农田的规模逐渐扩大,管理难度增加.在传统的农业生产中,由于缺乏有效的农田环境监测方法,使得人们无法对农作物的生长做出技术调整,随着物联网技术、云计算在各个领域的高速发展并逐步应用,通过对农田环境的监测,能够更加深入地了解农作物生长环境和农业生产环境.该系统基于Cesium架构,构建网络框架,感知层应用ZigBee传感节点.传感节点实时采集与农田生产有关的多个重要参数,通过网络构建层将各种数据发送到远程监测服务层.结果表明,该系统形成了一个较为完整的农业物联网结构体系,可为类似的监控设备及系统设计提供参考.
Design and Implementation of a Farmland Environmental Monitoring System Based on the Internet of Things
As a traditional agricultural powerhouse,China's agricultural development is the eco-nomic foundation for national development.With the development of agricultural industry and urbanization process,the scale of farmland is gradually expanding,and the difficulty of manage-ment is increasing.In traditional agricultural production,due to the lack of effective monitoring methods for agricultural environment,people are unable to make technical adjustments to crop growth.With the rapid development and gradual application of Internet of Things technology and cloud computing in various fields,monitoring the agricultural environment can provide a deeper understanding of crop growth and agricultural production environment.This system is based on the Cesium architecture.Build a network framework and apply ZigBee sensor nodes in the perception layer.Sensor nodes collect multiple important parameters related to agricultural production in real-time,and send various data to the remote monitoring service layer through the network construction layer.The results indicate that the system has formed a relatively com-plete agricultural Internet of Things structural system,which can provide reference for similar monitoring equipment and system design.

Farmland environmental monitoringSensorsCloud platformAgricultural Internet of Things

蒋兵、孙建刚

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大连民族大学土木工程学院,辽宁 大连 116000

农田环境监测 传感器 云平台 农业物联网

2024

长江信息通信
湖北通信服务公司

长江信息通信

影响因子:0.338
ISSN:2096-9759
年,卷(期):2024.37(12)