Unmanned Aerial Vehicles (UAVs) rely heavily on wireless communication systems. This method significantly improves aircraft control and data transmission between the ground operator and UAV. Each UAV has the option to choose its own user, power level, and sub-channel for effective communication. UAVs offer a potential solution for capacity difficulties faced by traditional base stations, such as cell blockage or specific events. This research proposes a novel three-dimensional (3D) placement technique for a UAV-aided wireless network. This method reduces power consumption and examines how the UAV’s height from the ground impacts power usage. This study explores how to optimize power use for better operational efficiency.

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Optimal Height with Minimum Power for a Unmanned Aerial Vehicle in an Urban Area

  • Pragna Katragadda,
  • Divyanshu Prakash,
  • Harshavardhan Makham,
  • Kota Nageswara Rao,
  • Mubeena Shaik,
  • Kalpana Naidu

摘要

Unmanned Aerial Vehicles (UAVs) rely heavily on wireless communication systems. This method significantly improves aircraft control and data transmission between the ground operator and UAV. Each UAV has the option to choose its own user, power level, and sub-channel for effective communication. UAVs offer a potential solution for capacity difficulties faced by traditional base stations, such as cell blockage or specific events. This research proposes a novel three-dimensional (3D) placement technique for a UAV-aided wireless network. This method reduces power consumption and examines how the UAV’s height from the ground impacts power usage. This study explores how to optimize power use for better operational efficiency.