TY - GEN
T1 - TBS Joint Optimization to Serve mmWave High Altitude UAVs
T2 - 13th IEEE International Conference on Communications, Circuits, and Systems, ICCCAS 2024
AU - Katragunta, Pravallika
AU - Barbeau, Michel
AU - Garcia-Alfaro, Joaquin
AU - Kranakis, Evangelos
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024/1/1
Y1 - 2024/1/1
N2 - High-altitude uncrewed aerial vehicles (UAVs) with millimeter wave communication are well-suited for fifth-generation (5G) and beyond applications. UAVs may cause significant interference to ground user equipment (GUE). We consider using a moving tethered aerial base station (TBS) as an alternative to a terrestrial base station. We consider, the UAV and GUE locations as contexts to perform joint TBS location, UAV and GUE power allocation optimization in a three-dimensional environment. We propose a contextual multi-armed bandit framework using a novel counterfactual Thompson sampling (CTS) algorithm. We compare its performance against a joint optimization using vanilla Thompson sampling (TS) and single optimization TS (SOTS) approaches. Our results show that the CTS approach converges faster. We conclude that the CTS-based approach achieves better interference mitigation for both aerial and ground users.
AB - High-altitude uncrewed aerial vehicles (UAVs) with millimeter wave communication are well-suited for fifth-generation (5G) and beyond applications. UAVs may cause significant interference to ground user equipment (GUE). We consider using a moving tethered aerial base station (TBS) as an alternative to a terrestrial base station. We consider, the UAV and GUE locations as contexts to perform joint TBS location, UAV and GUE power allocation optimization in a three-dimensional environment. We propose a contextual multi-armed bandit framework using a novel counterfactual Thompson sampling (CTS) algorithm. We compare its performance against a joint optimization using vanilla Thompson sampling (TS) and single optimization TS (SOTS) approaches. Our results show that the CTS approach converges faster. We conclude that the CTS-based approach achieves better interference mitigation for both aerial and ground users.
KW - 5G and beyond
KW - counterfactual causal inference
KW - multi-armed bandit
KW - tethered aerial base station
KW - unmanned aerial vehicle
U2 - 10.1109/ICCCAS62034.2024.10652678
DO - 10.1109/ICCCAS62034.2024.10652678
M3 - Conference contribution
AN - SCOPUS:85204405795
T3 - 2024 IEEE 13th International Conference on Communications, Circuits, and Systems, ICCCAS 2024
SP - 424
EP - 429
BT - 2024 IEEE 13th International Conference on Communications, Circuits, and Systems, ICCCAS 2024
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 10 May 2024 through 12 May 2024
ER -