Energy-Efficient Wireless Sensor Networks for Precision Agriculture: A Review
Энергоэффективные беспроводные сенсорные сети для точного земледелия: обзор
2017-08-03
SCID: 54.1/ferpmzsz
Discuss with AI
agricultural monitoringenergy harvestingenergy-efficient protocolsprecision agriculturewireless sensor networks
Figures from the paper
Abstract (AI)
Wireless sensor networks (WSNs) can be used in agriculture to provide farmers with a large amount of information. Precision agriculture (PA) is a management strategy that employs information technology to improve quality and production. Utilizing wireless sensor technologies and management tools can lead to a highly effective, green agriculture. Based on PA management, the same routine to a crop regardless of site environments can be avoided. From several perspectives, field management can improve PA, including the provision of adequate nutrients for crops and the wastage of pesticides for the effective control of weeds, pests, and diseases. This review outlines the recent applications of WSNs in agriculture research as well as classifies and compares various wireless communication protocols, the taxonomy of energy-efficient and energy harvesting techniques for WSNs that can be used in agricultural monitoring systems, and comparison between early research works on agriculture-based WSNs. The challenges and limitations of WSNs in the agricultural domain are explored, and several power reduction and agricultural management techniques for long-term monitoring are highlighted. These approaches may also increase the number of opportunities for processing Internet of Things (IoT) data.
Key Findings
1
It develops a taxonomy of energy-efficient and energy-harvesting techniques for extending WSN operation in agriculture.
2
Power-reduction strategies and agricultural management techniques are highlighted for long-term monitoring and expanded Internet of Things data processing opportunities.
3
The review classifies and compares wireless communication protocols applicable to agricultural monitoring systems.
4
The review compares earlier agriculture-focused WSN studies and identifies challenges and limitations affecting agricultural deployment.
5
Wireless sensor networks support precision agriculture by supplying field information for site-specific crop, nutrient, weed, pest, and disease management.
Research Object
Wireless sensor networks deployed for precision agriculture monitoring
Research Subject
applications, communication protocols, energy-efficient and energy-harvesting techniques, challenges, and long-term monitoring performance of agricultural WSNs
Publication Details
Publication Date
2017-08-03
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest