Skip to content

Fluid Antenna-Enhanced Symbol-Level Precoding for Multi-User MISO Communication Systems

2026 · IEEE Transactions on Communications · Vol 74, pp. 12576-12590 · 0 citations · 54 references

Abstract

In this paper, we propose an fluid antenna (FA)-enhanced interference exploitation symbol-level precoding (SLP) for downlink multi-user multiple-input single-output (MU-MISO) systems, focusing on transmitter-side fluid antenna systems (Tx-FAS) that allow flexible spatial correlation effects while preserving user portability. First, we derive an explicit expression for the achievable rate of SLP under finite-alphabet inputs, and further establish a closed-form upper bound that quantifies the theoretical rate improvement achieved by spatial reconfigurability of Tx-FAS. Subsequently, a joint optimization problem involving SLP design and Tx-FAS port selection is formulated to maximize the minimum user signal-to-interference-plus-noise ratio (SINR) under strict transmit power constraints. Due to the highly non-convex nature of the problem, we devise a genetic algorithm (GA) to efficiently obtain a near-optimal solution. Moreover, based on the optimal channel structure of SLP, we further develop a low-complexity algorithm with a spatial filtering mechanism to obtain a sub-optimal solution to the considered problem. Simulation results confirm that the proposed FAS-enhanced SLP scheme delivers notable performance improvements over both conventional precoding techniques and the FAS-only transmission approach.

View source

Similar papers

Preprint Aug 2026

Digital Twin-Aided Prescreening for User Scheduling in MU-MIMO Downlink Systems

Digital Twin User pre-Screening (DiTUS), a digital-twin (DT)-aided framework that identifies promising users before instantaneous CSI acquisition, demonstrating that DT-based prescreening preserves substantial multiuser-diversity gains by identifying strong, spatially compatible users before acquiring effective-channel...

Namhyun Kim, Mahmoud Saad Abouamer, Jeonghun Park et al. · 0 citations
Open access 2026

Joint RIS-RSMA Optimization for Asynchronous Multi-User Cell-Free MIMO

A unified RIS-RSMA optimization framework for asynchronous downlink CF-MIMO and targeted comparisons using WMMSE and regularized zero-forcing private precoders, together with the common-power allocation results, support the need for joint common/private precoder design.

Ghadir Dogim, Ahmed E. El-Mahdy, Falko Dressler · 0 citations
Conference Aug 2026

Achievable Rate Analysis of Non-Ideal Cell-Free Massive MIMO Systems with RSMA

Cell-free massive multiple-input multiple-output (CF-mMIMO) is a promising architecture for future wireless networks, yet its practical deployment is severely hindered by hardware impairments and time-varying channel conditions. To address these challenges, we investigate downlink transmission in a rate-splitting multi...

Le-Chen Li, Yao Zhang, Wenchao Xia et al. · 0 citations
2026

Transmit Beamforming Design for MIMO-ISAC Systems: A Sensing Mutual Information Optimization Perspective

In this paper, we investigate the transmit beamforming design for a general multiple-input multiple-output integrated sensing and communication (MIMO-ISAC) system, where a dual-functional base station (BS) simultaneously communicates with multiple multi-antenna communication users (CUs) and detects the multiple targets...

Kai Yang, Jin Xu, Xiao-Feng Tao et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.