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Tri-Hybrid Multi-User Precoding Using Pattern-Reconfigurable Antennas: Fundamental Models and Practical Algorithms

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arxiv 2505.08938 v2 pith:GFOLH3SF submitted 2025-05-13 eess.SP

classification eess.SP
keywords antennasmodelpattern-reconfigurabletri-hybridalgorithmsantennacommunicationhardware
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The integration of pattern-reconfigurable antennas into hybrid multiple-input multiple-output (MIMO) architectures presents a promising path toward high-efficiency and low-cost transceiver solutions. Pattern-reconfigurable antennas can dynamically steer per-antenna radiation patterns, enabling more efficient power utilization and interference suppression. In this work, we study a tri-hybrid MIMO architecture for multi-user communication that integrates digital, analog, and antenna-domain precoding using pattern-reconfigurable antennas. For characterizing the reconfigurability of antenna radiation patterns, we develop two models -- Model~I and Model~II. Model~I captures realistic hardware constraints through limited pattern selection, while Model~II explores the performance upper bound by assuming arbitrary pattern generation. Based on these models, we develop two corresponding tri-hybrid precoding algorithms grounded in the weighted minimum mean square error (WMMSE) framework, which alternately optimize the digital, analog, and antenna precoders under practical per-antenna power constraints. Realistic simulations conducted in ray-tracing generated environments are utilized to evaluate the proposed system and algorithms. The results demonstrate the significant potential of the considered tri-hybrid architecture in enhancing communication performance and hardware efficiency. However, they also reveal that the existing hardware is not yet capable of fully realizing these performance gains, underscoring the need for joint progress in antenna design and communication theory development.

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Cited by 5 Pith papers

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    MiLAC combiner matches fully digital CRB for DOA estimation of K targets with 2 RF chains per target when row space spans the 2K-dimensional steering-derivative subspace.

  2. Tri-Hybrid Beamforming Design for ISAC Systems with Reconfigurable Antennas

    eess.SP 2026-04 unverdicted novelty 7.0 of 10

    A tri-hybrid beamforming design using reconfigurable antennas for ISAC systems achieves nearly 100% higher spectrum efficiency and 62.5% lower antenna overhead than conventional antenna benchmarks.

  3. Hybrid Codebook Design for Localization Using Electromagnetically Reconfigurable Fluid Antenna System

    eess.SP 2025-08 conditional novelty 6.0 of 10

    Three beams derived from the array response and its angle derivatives nearly minimize the localization error bound for a base station with pattern-reconfigurable fluid antennas.

  4. Multi-User Localization via Active Sensing with Electromagnetically Reconfigurable Antennas

    eess.SP 2026-07 conditional novelty 5.0 of 10

    A learned LSTM-GNN policy that sequentially reconfigures a shared reconfigurable antenna aperture improves multi-user wireless localization accuracy over fixed-pattern arrays in simulation.

  5. Signal Processing Foundations of Reconfigurable Antennas in the Tri-Hybrid MIMO Architecture

    eess.SP 2026-04 unverdicted novelty 5.0 of 10

    A unified model for tri-hybrid MIMO incorporates reconfigurable antennas, introduces the reconfigurability efficiency factor metric, and shows electromagnetic reconfiguration couples the channel and precoder.

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