Derives upper and lower bounds plus a closed-form suboptimal solution for optimal tether length and inclination angle of tethered UAVs to minimize average path loss, along with the distribution of the minimum inclination angle across environments.
Capacity and coverage enhancement using long-endurance tethered airborne base stations
2 Pith papers cite this work. Polarity classification is still indexing.
years
2019 2representative citing papers
Derives successful content delivery probability for conjugate beamforming in massive MIMO serving coexisting aerial and ground users and identifies altitude-dependent performance tradeoffs from antenna down-tilt.
citing papers explorer
-
On the 3-D Placement of Airborne Base Stations Using Tethered UAVs
Derives upper and lower bounds plus a closed-form suboptimal solution for optimal tether length and inclination angle of tethered UAVs to minimize average path loss, along with the distribution of the minimum inclination angle across environments.
-
Towards a Connected Sky: Performance of Beamforming with Down-tilted Antennas for Ground and UAV User Co-existence
Derives successful content delivery probability for conjugate beamforming in massive MIMO serving coexisting aerial and ground users and identifies altitude-dependent performance tradeoffs from antenna down-tilt.