Traditional and inefficient agricultural production methods cannot meet the modern agriculture requirements of safe, high quality, efficiency and productivity. The technology of Internet of Things is introduced into the field of agriculture, and the agricultural industrialization and information technology has an unprecedented opportunity. The relevant literature is read, the actual scene is investigated and the needs of agricultural field monitoring are identified. In the meanwhile, the development trend of Internet of Things and facility agricultural monitoring system is analyzed and system performance indicators that meet the actual requirements are developed. Moreover, the overall program of the system is designed and the three-tier architecture of Internet of Things system based on sensor technology, wireless communication technology, and configuration monitoring technology is constructed. The structure of the three layers of the sensing layer, transmission layer and application layer is analyzed, and the greenhouse sensor intelligent management system based on Internet of Things is designed. The performance of the system is tested in the laboratory. The test items include remote monitoring effect, information acquisition precision and system overall coordination. The results showed that the system is reasonable, the structure is compact, the network layer is reliable, and the performance is stable. Meanwhile, the application layer is rich in functionality, the interface is beautiful, the data processing is intelligent and the operability is strong. As last, it is concluded that the system meets system design requirements and expected performance specifications.
[1]
Anastasios I. Dounis,et al.
Intelligent demand side energy management system for autonomous polygeneration microgrids
,
2013
.
[2]
Wang FuLu,et al.
Research of environmental monitoring system for greenhouse based on wireless sensor network
,
2011
.
[3]
Boselin Prabhu,et al.
Environmental Monitoring and Greenhouse Control by Distributed Sensor Network
,
2016
.
[4]
Bangyin Liu,et al.
Smart energy management system for optimal microgrid economic operation
,
2011
.
[5]
Chen Feng,et al.
The Design and Realization of Apple Orchard Intelligent Monitoring System Based on Internet of Things Technology
,
2012
.
[6]
Melanie Swan,et al.
Sensor Mania! The Internet of Things, Wearable Computing, Objective Metrics, and the Quantified Self 2.0
,
2012,
J. Sens. Actuator Networks.
[7]
Daqiang Zhang,et al.
Internet of Things
,
2012,
J. Univers. Comput. Sci..
[8]
Jacob Goldberger,et al.
Obstacle detection in a greenhouse environment using the Kinect sensor
,
2015,
Comput. Electron. Agric..
[9]
Tiantian Guo,et al.
Design and implementation of the span greenhouse agriculture Internet of Things system
,
2015,
2015 International Conference on Fluid Power and Mechatronics (FPM).
[10]
Ran Ni.
Design and Implementation of Intelligent Greenhouses Based on the Internet of Things
,
2014
.
[11]
Vicente Milanés Montero,et al.
An Intelligent V2I-Based Traffic Management System
,
2012,
IEEE Transactions on Intelligent Transportation Systems.