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Journal article ·

Fair Energy and Data Rate Maximization in UAV-Powered IoT-Satellite Integrated Networks

Giovanni Iacovelli, Giovanni Grieco, Antonio Petrosino, Luigi Alfredo Grieco, Gennaro Boggia

Abstract

Non-Terrestrial Networks represent a valuable solution for providing connectivity to Internet of Things (IoT) devices in remote areas, where classical infrastructure is unavailable. Due to the low-power nature of IoT devices, an Unmanned Aerial Vehicle (UAV) can prevent the energy depletion of these Ground Nodes (GNs) by employing Wireless Power Transfer through an array antenna. Starting from the mathematical modeling of such a scenario, two Mixed-Integer Non-Linear Programming problems are formulated to fairly maximize (i) the energy distribution and (ii) the total amount of data transmitted to a Low Earth Orbit CubeSat. Therefore, it is necessary to optimize the drone kinematics, the transmission scheduling plan, and the beamforming vectors of the array antenna. To cope with their non-convexity, both problems are mathematically manipulated to reach a tractable form, for which two optimization algorithms are proposed and their complexity analyzed. To prove the effectiveness of the overall solution, a comprehensive simulation campaign is conducted under several parameter settings, such as number of GNs and UAV antenna elements with different transmission power levels. Finally, the proposal is compared with a baseline, which confirms the superiority of the proposal up to 7 times in terms of total transmitted data.

Cite this work

@article{iacovelli2024fair,
  title = {{Fair Energy and Data Rate Maximization in UAV-Powered IoT-Satellite Integrated Networks}},
  author = {Giovanni Iacovelli and Giovanni Grieco and Antonio Petrosino and Luigi Alfredo Grieco and Gennaro Boggia},
  journal = {IEEE Transactions on Communications, vol. 72, no. 4},
  year = {2024},
  doi = {10.1109/tcomm.2023.3343417},
  url = {https://doi.org/10.1109/tcomm.2023.3343417}
}

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Publications

A Survey on Unmanned Aerial Vehicles (UAVs) Communications: State-of-the-Art, Existing Standards and Future Directions2026IoD-Sim: An Open-Source Simulator for 6G Integrated Terrestrial/Non-Terrestrial Networks2025Spatial Situational Awareness for Safe UAVs in XAI-enhanced 6G Networks: Vision, Challenges, and Opportunities2025Detection, Tracking, and Identification of Drones: an Overview on Counter-UAS Techniques, and Open Challenges2025Design and Experimental Evaluation of Unmanned Aircraft Systems Communications2025Towards the Integration of Terrestrial and Non-Terrestrial Networks: a Testbed for in-Lab Evaluation2025An Indoor Experimental Testbed for 5G-Based UAV Control and Communication2025Towards an Open-Source Simulation Platform for Counter-UAS Sensor Fusion2025A System-Level Simulation Module for Multi-UAV IRS-Assisted Communications2024Fair Energy and Data Rate Maximization in UAV-Powered IoT-Satellite Integrated Networks2024Counter-drone systems and data fusion2024Preliminary Performance Evaluation of a Satellite-to-HAP Communication Link2023Internet of Drones Simulator: Design, Implementation, and Performance Evaluation2023Authentication and Authorization in Cyber-Security Frameworks: a Novel Approach for Securing Digital Service Chains2022A Reference Architecture for Management of Security Operations in Digital Service Chains2022On the Design of the Drone Control Layer2021Dynamic Management of Forwarding Rules in a T-SDN Architecture with Energy and Bandwidth Constraints2020A Real-time Simulation Framework for Complex and Large-scale Optical Transport Networks based on the SDN Paradigm2020An Open Source and System-Level Simulator for the Internet of Drones2019

Software

IoD-SimC++SeDaFuVC++IoD-Sim AirflowPythonIoD-Sim SplashC++IoD-Sim Workspace QuickstartShellIUNS-3 5G NRC++GUARD Kafka security pluginsJava

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