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Wireless Underground Sensor Communication Using Acoustic Technology
DOI:10.3390/s24103113.png)
摘要
En 中文
The rapid advancement toward smart cities has accelerated the adoption of various Internet of Things (IoT) devices for underground applications, including agriculture, which aims to enhance sustainability by reducing the use of vital resources such as water and maximizing production. On-farm IoT devices with above-ground wireless nodes are vulnerable to damage and data loss due to heavy machinery movement, animal grazing, and pests. To mitigate these risks, wireless Underground Sensor Networks (WUSNs) are proposed, where devices are buried underground. However, implementing WUSNs faces challenges due to soil heterogeneity and the need for low-power, small-size, and long-range communication technology. While existing radio frequency (RF)-based solutions are impeded by substantial signal attenuation and low coverage, acoustic wave-based WUSNs have the potential to overcome these impediments. This paper is the first attempt to review acoustic propagation models to discern a suitable model for the advancement of acoustic WUSNs tailored to the agricultural context. Our findings indicate the Kelvin-Voigt model as a suitable framework for estimating signal attenuation, which has been verified through alignment with documented outcomes from experimental studies conducted in agricultural settings. By leveraging data from various soil types, this research underscores the feasibility of acoustic signal-based WUSNs.
Keyword:
smart cities
wireless underground sensor network (WUSN)
IoT-based moisture sensor
acoustic communication
below ground communication
sustainable agriculture
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期刊
IF:
3.5
论文数:
7.2W
被引数:
20.9W
机构
引用论文
Evolution of Internet of Things (IoT) and its significant impact in the field of Precision Agriculture物联网的发展及其对精准农业领域的重大影响
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Biosensors
IF0
Enhancing Smart Irrigation Efficiency: A New WSN-Based Localization Method for Water Conservation
WATER
IF3
Application of Internet-of-Things Wireless Communication Technology in Agricultural Irrigation Management: A Review
SUSTAINABILITY
IF3.3

