pp. 1463-1472
S&M3260 Research Paper of Special Issue https://doi.org/10.18494/SAM4174 Published: April 27, 2023 Performance Analysis of Unmanned Aerial Vehicle Assisted Wireless IoT Sensors Based on Air-to-Ground Communication Model for Smart Farming [PDF] Sarun Duangsuwan and Sathaporn Promwong (Received October 16, 2022; Accepted February 13, 2023) Keywords: A2G communication, IoT sensors, UAV-assisted IoT, smart farming
We used an unmanned aerial vehicle (UAV) and IoT as a new platform for soil moisture monitoring based on the air-to-ground (A2G) communication model. We investigated an energy-efficient UAV trajectory by considering the power outage probability and transmission rate for UAV-assisted wireless IoT sensor connectivity. We considered the closed-form power outage probability for IoT sensors located within the coverage zone of a UAV drone small cell. We conducted experiments in the Napier and Ruzi grass farms with IoT sensors for detecting soil moisture along a drip line irrigation system located in the fields. The power outage probability is given for different UAV heights and transmission rates, which contributes to reliable communication with IoT sensors.
Corresponding author: Sarun DuangsuwanThis work is licensed under a Creative Commons Attribution 4.0 International License. Cite this article Sarun Duangsuwan and Sathaporn Promwong, Performance Analysis of Unmanned Aerial Vehicle Assisted Wireless IoT Sensors Based on Air-to-Ground Communication Model for Smart Farming, Sens. Mater., Vol. 35, No. 4, 2023, p. 1463-1472. |