Abstract
Unmanned Aerial Vehicles (UAVs) often lack the size, weight, and power to support large antenna arrays or a large number of radio chains. Despite such limitations, emerging applications that require the use of swarms, where UAVs form a pattern and coordinate towards a common goal, must have the capability to transmit in any direction in three-dimensional (3D) space from moment to moment. In this work, we design a measurement study to evaluate the role of antenna polarization diversity on UAV systems communicating in arbitrary 3D space. To do so, we construct flight patterns where one transmitting UAV is hovering at a high altitude (80 m) and a receiving UAV hovers at 114 different positions that span 3D space at a radial distance of approximately 20 m along equally-spaced elevation and azimuth angles. To understand the role of diverse antenna polarizations, both UAVs have a horizontally-mounted antenna and a vertically-mounted antenna - each attached to a dedicated radio chain - creating four wireless channels. With this measurement campaign, we seek to understand how to optimally select an antenna orientation and quantify the gains in such selections.
| Original language | English |
|---|---|
| Title of host publication | Proceedings - 2021 IEEE 22nd International Symposium on a World of Wireless, Mobile and Multimedia Networks, WoWMoM 2021 |
| Pages | 298-303 |
| Number of pages | 6 |
| ISBN (Electronic) | 9781665422635 |
| DOIs | |
| State | Published - Jun 2021 |
| Event | 22nd IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks, WoWMoM 2021 - Virtual, Online Duration: Jun 7 2021 → Jun 11 2021 |
Publication series
| Name | Proceedings - 2021 IEEE 22nd International Symposium on a World of Wireless, Mobile and Multimedia Networks, WoWMoM 2021 |
|---|
Conference
| Conference | 22nd IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks, WoWMoM 2021 |
|---|---|
| City | Virtual, Online |
| Period | 6/7/21 → 6/11/21 |
Bibliographical note
Publisher Copyright:© 2021 IEEE.
Funding
Fig. 6: Best performing TX-RX antenna pair (a) and its capacity (b). Distribution of measured capacity over 3D space of four fixed TX-RX pairs and ”best-pair” selection strategy (c.) ACKNOWLEDGMENTS This work was in part supported by NSF grants CNS-1823304 and CNS-1909381 and Air Force Office of Scientific Research grant FA9550-19-1-0375.
| Funders | Funder number |
|---|---|
| National Science Foundation Arctic Social Science Program | CNS-1909381, CNS-1823304 |
| Air Force Office of Scientific Research, United States Air Force | FA9550-19-1-0375 |
Keywords
- A2A channel
- Antenna polarization
- Unmanned aerial vehicles
- Wireless channel measurements
ASJC Scopus subject areas
- Computer Networks and Communications
- Hardware and Architecture
- Media Technology
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