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Finite-Precision Arithmetic Transceiver for Massive MIMO Systems

Fang, Yiming; Chen, Li; Chen, Yunfei; Yin, Huarui

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Authors

Yiming Fang

Li Chen

Huarui Yin



Abstract

Efficient implementation of massive multiple-input-multiple-output (MIMO) transceivers is essential for the next-generation wireless networks. To reduce the high computational complexity of the massive MIMO transceiver, in this paper, we propose a new massive MIMO architecture using finite-precision arithmetic. First, we conduct the rounding error analysis and derive the lower bound of the achievable rate for single-input-multiple-output (SIMO) using maximal ratio combining (MRC) and multiple-input-single-output (MISO) systems using maximal ratio transmission (MRT) with finite-precision arithmetic. Then, considering the multi-user scenario, the rounding error analysis of zero-forcing (ZF) detection and precoding is derived by using the normal equations (NE) method. The corresponding lower bounds of the achievable sum rate are also derived and asymptotic analyses are presented. Built upon insights from these analyses and lower bounds, we propose a mixed-precision architecture for massive MIMO systems to offset performance gaps due to finite-precision arithmetic. The corresponding analysis of rounding errors and computational costs is obtained. Simulation results validate the derived bounds and underscore the superiority of the proposed mixed-precision architecture to the conventional structure.

Citation

Fang, Y., Chen, L., Chen, Y., & Yin, H. (online). Finite-Precision Arithmetic Transceiver for Massive MIMO Systems. IEEE Journal on Selected Areas in Communications, https://doi.org/10.1109/JSAC.2025.3531532

Journal Article Type Article
Acceptance Date Nov 14, 2024
Online Publication Date Jan 20, 2025
Deposit Date Nov 21, 2024
Publicly Available Date Feb 3, 2025
Journal IEEE Journal on Selected Areas in Communications
Print ISSN 0733-8716
Electronic ISSN 1558-0008
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
DOI https://doi.org/10.1109/JSAC.2025.3531532
Public URL https://durham-repository.worktribe.com/output/3102494

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