无线传感器网络
网络拓扑
网状网络
计算机科学
星型网络
工作台
计算机网络
嵌入式系统
无线
实时计算
操作系统
数据挖掘
可视化
环形网络
作者
Mayra Erazo-Rodas,Mary Sandoval-Moreno,Sergio Muñoz-Romero,Mónica Huerta,David Rivas-Lalaleo,César A. Naranjo,José Luis Rojo‐Álvarez
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2018-08-04
卷期号:18 (8): 2555-2555
被引量:30
摘要
In recent years, attention has been paid to wireless sensor networks (WSNs) applied to precision agriculture. However, few studies have compared the technologies of different communication standards in terms of topology and energy efficiency. This paper presents the design and implementation of the hardware and software of three WSNs with different technologies and topologies of wireless communication for tomato greenhouses in the Andean region of Ecuador, as well as the comparative study of the performance of each of them. Two companion papers describe the study of the dynamics of the energy consumption and of the monitored variables. Three WSNs were deployed, two of them with the IEEE 802.15.4 standard with star and mesh topologies (ZigBee and DigiMesh, respectively), and a third with the IEEE 802.11 standard with access point topology (WiFi). The measured variables were selected after investigation of the climatic conditions required for efficient tomato growth. The measurements for each variable could be displayed in real time using either a laboratory virtual instrument engineering workbench (LabVIEWTM) interface or an Android mobile application. The comparative study of the three networks made evident that the configuration of the DigiMesh network is the most complex for adding new nodes, due to its mesh topology. However, DigiMesh maintains the bit rate and prevents data loss by the location of the nodes as a function of crop height. It has been also shown that the WiFi network has better stability with larger precision in its measurements.
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