Article (Scientific journals)
Fairness Designs for Load Balancing Optimization in Satellite-Cell-Free Massive MIMO Systems
Van Chien, Trinh; Thu, Ngo Tran Anh; Lam, Nguyen Hoang et al.
2025In IEEE Transactions on Aerospace and Electronic Systems, p. 1-13
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Keywords :
fairness design; genetic algorithm; load balancing; Satellite-Cell-Free Massive MIMO; Access points; Association patterns; Cell-free; Fairness design; Ground communications; Load-Balancing; Optimisations; Satellite cells; Satellite-cell-free massive MIMO; Small scale; Aerospace Engineering; Electrical and Electronic Engineering
Abstract :
[en] Space-ground communication systems are important in providing ubiquitous services in a large area. This paper considers the fairness designs under a load-balancing framework with heterogeneous receivers comprising access points (APs) and a satellite. We derive an ergodic throughput of each user in the uplink data transmission for an arbitrary association pattern and imperfect channel state information, followed by a closedform expression with the maximum-ratio combining and rich scattering environments. We further formulate a generic fairness optimization problem, subject to the optimal association patterns for all the users. Despite the combinatorial structure, the global optimal solution to the association patterns can be obtained by an exhaustive search for small-scale networks with several APs and users. We design a low computational complexity algorithm for large-scale networks based on evolutionary computation that obtains good patterns in polynomial time. Specifically, the genetic algorithm (GA) is adapted to the discrete feasible region and the concrete fairness metrics. We extensively observe the fairness design problem by incorporating transmit power control and propose a hybrid genetic algorithm to address the problem. Numerical results demonstrate that the association pattern to each user has a significant impact on the network throughput. Moreover, the proposed GA-based algorithm offers the same performance as an exhaustive search for small-scale networks, while it unveils interesting practical association patterns as the network dimensions go large. The load-balancing approach, combined with power control factors, significantly enhances system performance compared to conventional schemes and configurations with fixed factors.
Disciplines :
Computer science
Author, co-author :
Van Chien, Trinh;  School of Information and Communication Technology (SoICT), Hanoi University of Science and Technology (HUST), Viet Nam
Thu, Ngo Tran Anh;  School of Information and Communication Technology (SoICT), Hanoi University of Science and Technology (HUST), Viet Nam
Lam, Nguyen Hoang;  School of Information and Communication Technology (SoICT), Hanoi University of Science and Technology (HUST), Viet Nam
Ngo, Hien Quoc;  Queen's University Belfast, School of Electronics, Electrical Engineering and Computer Science, Belfast, United Kingdom
CHATZINOTAS, Symeon  ;  University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
Binh, Huynh Thi Thanh;  School of Information and Communication Technology (SoICT), Hanoi University of Science and Technology (HUST), Viet Nam
External co-authors :
yes
Language :
English
Title :
Fairness Designs for Load Balancing Optimization in Satellite-Cell-Free Massive MIMO Systems
Publication date :
22 August 2025
Journal title :
IEEE Transactions on Aerospace and Electronic Systems
ISSN :
0018-9251
eISSN :
1557-9603
Publisher :
Institute of Electrical and Electronics Engineers Inc.
Pages :
1-13
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBilu :
since 25 November 2025

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