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Movable Antenna Aided Multiuser Communications: Antenna Position Optimization Based on Statistical Channel Information

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arxiv 2502.20856 v1 pith:XNRVZDUY submitted 2025-02-28 eess.SP

classification eess.SP
keywords channelantennaoptimizationpositionsstatisticalperformancerateusers
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The movable antenna (MA) technology has attracted great attention recently due to its promising capability in improving wireless channel conditions by flexibly adjusting antenna positions. To reap maximal performance gains of MA systems, existing works mainly focus on MA position optimization to cater to the instantaneous channel state information (CSI). However, the resulting real-time antenna movement may face challenges in practical implementation due to the additional time overhead and energy consumption required, especially in fast time-varying channel scenarios. To address this issue, we propose in this paper a new approach to optimize the MA positions based on the users' statistical CSI over a large timescale. In particular, we propose a general field response based statistical channel model to characterize the random channel variations caused by the local movement of users. Based on this model, a two-timescale optimization problem is formulated to maximize the ergodic sum rate of multiple users, where the precoding matrix and the positions of MAs at the base station (BS) are optimized based on the instantaneous and statistical CSI, respectively. To solve this non-convex optimization problem, a log-barrier penalized gradient ascent algorithm is developed to optimize the MA positions, where two methods are proposed to approximate the ergodic sum rate and its gradients with different complexities. Finally, we present simulation results to evaluate the performance of the proposed design and algorithms based on practical channels generated by ray-tracing. The results verify the performance advantages of MA systems compared to their fixed-position antenna (FPA) counterparts in terms of long-term rate improvement, especially for scenarios with more diverse channel power distributions in the angular domain.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Deep Learning Framework for Joint Channel Acquisition and Communication Optimization in Movable Antenna Systems

    cs.IT 2025-08 conditional novelty 6.0 of 10

    An end-to-end neural network jointly designs pilots, quantized feedback, movable-antenna positions, and precoding, achieving near-perfect-CSI sum rates with limited feedback in simulated MA downlink systems.

  2. Extremely Large-Scale Movable Antenna-Enabled Multiuser Communications: Modeling and Optimization

    cs.IT 2025-06 conditional novelty 6.0 of 10

    Movable subarray placement optimized over a large 2D region improves simulated multiuser uplink rate versus fixed arrays, via a closed-form MRC rate approximation and a successive replacement algorithm.

  3. Does Movable Antenna Present A Dual-edged Nature? From the Perspective of Physical Layer Security: A Joint Design of Fixed-position Antenna and Movable Antenna

    cs.IT 2025-07 reject novelty 5.0 of 10

    A hybrid FPA-MA array with joint position and beamforming optimization is claimed to raise physical-layer secrecy rate by up to 42% over FPA-only and 9% over MA-only baselines, but the analytical and numerical support...

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