Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration

In this paper, we formulate Subcarrier Assignment and Discrete Power Allocation for multi-UAV millimeter-wave cooperative Orthogonal Frequency Division Multiple Access (OFDMA) networks as a joint optimization problem considering the heterogeneous user data rate quality-of-service (QoS) requirements....

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Published in:IEEE Access
Main Authors: Tong Wang, Chuanchuan You, Zhou He, Youtian Wang
Format: Article
Language:English
Published: IEEE 2023-01-01
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10298066/
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author Tong Wang
Chuanchuan You
Zhou He
Youtian Wang
author_facet Tong Wang
Chuanchuan You
Zhou He
Youtian Wang
author_sort Tong Wang
collection DOAJ
container_title IEEE Access
description In this paper, we formulate Subcarrier Assignment and Discrete Power Allocation for multi-UAV millimeter-wave cooperative Orthogonal Frequency Division Multiple Access (OFDMA) networks as a joint optimization problem considering the heterogeneous user data rate quality-of-service (QoS) requirements. The formulated joint optimization problem, named Discrete Power and Subcarrier Allocation (DPSA), is a nonconvex and mixed-integer nonlinear programming (MINP) problem, making it NP-hard to solve. We then transform the DPSA into the Subcarrier and Power Resource Efficient Cooperative Potential Game (SRECPG) based on game theory which facilitates distributed execution. We analyze the conditions under which a Nash Equilibrium (NE) exists in the SRECPG and provide rigorous proof of its existence. Furthermore, to enhance computational efficiency, we propose a BR-SSO algorithm based on better response dynamics. BR-SSO dramatically reduces the computational burden compared to the best response dynamics based on local exhaustive search (BRLES) while still ensuring convergence to a NE. Through extensive simulations, we demonstrated the effectiveness of the proposed SRECPG and BR-SSO algorithms. The results show significant improvements in throughput, fairness, and QoS guarantees compared to the baseline schemes. Our approach offers valuable insights into the design of efficient resource allocation schemes for multi-UAV millimeter-wave networks with varying QoS demands.
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spelling doaj-art-7ec2a0b53b7e4167a6ffd64cced187142025-08-19T23:55:39ZengIEEEIEEE Access2169-35362023-01-011112313212314810.1109/ACCESS.2023.332821410298066Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS ConsiderationTong Wang0https://orcid.org/0000-0002-3704-8871Chuanchuan You1https://orcid.org/0009-0007-0262-8554Zhou He2Youtian Wang3School of Information Engineering, Hubei University of Economics, Wuhan, ChinaSchool of Information Engineering, Hubei University of Economics, Wuhan, ChinaSchool of Information Engineering, Hubei University of Economics, Wuhan, ChinaSchool of Information Management, Hubei University of Economics, Wuhan, ChinaIn this paper, we formulate Subcarrier Assignment and Discrete Power Allocation for multi-UAV millimeter-wave cooperative Orthogonal Frequency Division Multiple Access (OFDMA) networks as a joint optimization problem considering the heterogeneous user data rate quality-of-service (QoS) requirements. The formulated joint optimization problem, named Discrete Power and Subcarrier Allocation (DPSA), is a nonconvex and mixed-integer nonlinear programming (MINP) problem, making it NP-hard to solve. We then transform the DPSA into the Subcarrier and Power Resource Efficient Cooperative Potential Game (SRECPG) based on game theory which facilitates distributed execution. We analyze the conditions under which a Nash Equilibrium (NE) exists in the SRECPG and provide rigorous proof of its existence. Furthermore, to enhance computational efficiency, we propose a BR-SSO algorithm based on better response dynamics. BR-SSO dramatically reduces the computational burden compared to the best response dynamics based on local exhaustive search (BRLES) while still ensuring convergence to a NE. Through extensive simulations, we demonstrated the effectiveness of the proposed SRECPG and BR-SSO algorithms. The results show significant improvements in throughput, fairness, and QoS guarantees compared to the baseline schemes. Our approach offers valuable insights into the design of efficient resource allocation schemes for multi-UAV millimeter-wave networks with varying QoS demands.https://ieeexplore.ieee.org/document/10298066/Constrained potential gamedownlink multi-cell OFDMAnash equilibriumunmanned aerial vehicleblockagemillimeter-wave
spellingShingle Tong Wang
Chuanchuan You
Zhou He
Youtian Wang
Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
Constrained potential game
downlink multi-cell OFDMA
nash equilibrium
unmanned aerial vehicle
blockage
millimeter-wave
title Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
title_full Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
title_fullStr Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
title_full_unstemmed Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
title_short Distributed Subcarrier Assignment and Discrete Power Allocation for Multi-UAV Millimeter-Wave Cooperative OFDMA Networks With Heterogeneous QoS Consideration
title_sort distributed subcarrier assignment and discrete power allocation for multi uav millimeter wave cooperative ofdma networks with heterogeneous qos consideration
topic Constrained potential game
downlink multi-cell OFDMA
nash equilibrium
unmanned aerial vehicle
blockage
millimeter-wave
url https://ieeexplore.ieee.org/document/10298066/
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