Measurement-Based Large Scale Statistical Modeling of Air-to-Air Wireless UAV Channels via Novel Time-Frequency Analysis

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Date

2022

Authors

Kaplan, Batuhan
Kahraman, Ibrahim
Kesir, Samed
Yarkan, Serhan
Ekti, Ali Riza
Baykas, Tuncer

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IEEE-Inst Electrical Electronics Engineers Inc

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Abstract

Any operation scenario for unmanned aerial vehicles also known as drones in real world requires resilient wireless link to guarantee capacity and performance for users, which can only be achieved by obtaining detailed knowledge about the propagation channel. Thus, this study investigates the large-scale channel propagation statistics for the line of sight air-to-air (A2A) drone communications to estimate the path loss exponent (PLE). We conducted a measurement campaign at 5.8 GHz, using low cost and light weight software defined radio based channel sounder which is developed in this study and then further integrated on commercially available drones. To determine the PLE, frequency-based, time-based and time-frequency based methods are utilized. Accuracy of the proposed method is verified under ideal conditions in a well-isolated anechoic chamber before the actual measurement campaign to verify the performance in a free space path loss environment. The path loss exponent for A2A wireless drone channel is estimated with these verified methods.

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Keywords

Drones, Loss measurement, Atmospheric modeling, Wireless communication, Antenna measurements, Frequency measurement, Transmitters, UAV, air-to-air (A2A) channel modeling, STFT, measurements, path loss, line of sight

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Citation

6

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Q1

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Q1

Source

Ieee Wireless Communications Letters

Volume

11

Issue

1

Start Page

136

End Page

140