Aerial Base Stations Deployment in 6G Cellular Networks using Tethered Drones: The Mobility and Endurance Trade-off.
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[1] Luiz A. DaSilva,et al. UAVs as Mobile Infrastructure: Addressing Battery Lifetime , 2018, IEEE Communications Magazine.
[2] Emanuele Garone,et al. Taut Cable Control of a Tethered UAV , 2014 .
[3] Robin R. Murphy,et al. Motion Planning for a UAV with a Straight or Kinked Tether , 2018, 2018 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[4] Özgür B. Akan,et al. Energy Neutral Internet of Drones , 2018, IEEE Communications Magazine.
[5] Anthony Tzes,et al. The Power-over-Tether system for powering small UAVs: Tethering-line tension control synthesis , 2015, 2015 23rd Mediterranean Conference on Control and Automation (MED).
[6] Mohamed-Slim Alouini,et al. What should 6G be? , 2019 .
[7] Mohamed-Slim Alouini,et al. FSO-Based Vertical Backhaul/Fronthaul Framework for 5G+ Wireless Networks , 2016, IEEE Communications Magazine.
[8] Mohamed-Slim Alouini,et al. On the 3-D Placement of Airborne Base Stations Using Tethered UAVs , 2019, IEEE Transactions on Communications.
[9] Rui Zhang,et al. Wireless communications with unmanned aerial vehicles: opportunities and challenges , 2016, IEEE Communications Magazine.
[10] Walid Saad,et al. A Vision of 6G Wireless Systems: Applications, Trends, Technologies, and Open Research Problems , 2019, IEEE Network.
[11] Halim Yanikomeroglu,et al. The New Frontier in RAN Heterogeneity: Multi-Tier Drone-Cells , 2016, IEEE Communications Magazine.
[12] Qingqing Wu,et al. Fundamental Trade-offs in Communication and Trajectory Design for UAV-Enabled Wireless Network , 2018, IEEE Wireless Communications.