Efficient Design of Fronthaul-Constrained Uplink Reception for Cell-Free XL-MIMO

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초록

With the evolution of multiple-input multiple-output (MIMO) technology toward extremely large (XL) MIMO systems comprising hundreds of, or more, antennas, this work investigates scalable and fronthaul-efficient reception design for the uplink of cell-free (CF) XL-MIMO systems. In such systems, the uplink signals transmitted by mobile user equipments (UEs) are jointly decoded at a central processing unit (CPU) connected to distributed access points (APs) via finite-capacity fronthaul links. We address the joint optimization of linear transform matrices, used by the APs to reduce the signal dimension and fronthaul load, and fronthaul compression strategies to maximize the uplink sum-rate. A fractional programming (FP)-based iterative algorithm is first developed, followed by a reduced-complexity variant, termed accelerated FP (A-FP), along with its decentralized implementation whose fronthaul overhead remains independent of the number of AP antennas. Numerical results show that the proposed A-FP scheme significantly reduces computational complexity compared to FP implemented with general-purpose solvers, while substantially outperforming scalable baseline schemes that rely solely on local channel state information.

키워드

AntennasAntenna arraysAntennas and propagationCentral Processing UnitFiltersElectronic circuitsFilteringMatched filtersMIMOUplinkExtremely-large cell-free massive MIMOfractional programmingreduced-complexityfronthaul-efficient
제목
Efficient Design of Fronthaul-Constrained Uplink Reception for Cell-Free XL-MIMO
저자
Park, Seok Hwan
DOI
10.1109/LWC.2026.3683671
발행일
2026-04
유형
Article
저널명
IEEE Wireless Communications Letters
15
페이지
2614 ~ 2618