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Multiuser Communications Aided by Cross-Linked Movable Antenna Array: Architecture and Optimization

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arxiv 2505.03175 v1 pith:3JGNZCYF submitted 2025-05-06 cs.IT math.IT

Multiuser Communications Aided by Cross-Linked Movable Antenna Array: Architecture and Optimization

classification cs.IT math.IT
keywords antennacl-mamovementoptimizationpowertransmitapproachapvs
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Movable antenna (MA) has been regarded as a promising technology to enhance wireless communication performance by enabling flexible antenna movement. However, the hardware cost of conventional MA systems scales with the number of movable elements due to the need for independently controllable driving components. To reduce hardware cost, we propose in this paper a novel architecture named cross-linked MA (CL-MA) array, which enables the collective movement of multiple antennas in both horizontal and vertical directions. To evaluate the performance benefits of the CL-MA array, we consider an uplink multiuser communication scenario. Specifically, we aim to minimize the total transmit power while satisfying a given minimum rate requirement for each user by jointly optimizing the horizontal and vertical antenna position vectors (APVs), the receive combining at the base station (BS), and the transmit power of users. A globally lower bound on the total transmit power is derived, with closed-form solutions for the APVs obtained under the condition of a single channel path for each user. For the more general case of multiple channel paths, we develop a low-complexity algorithm based on discrete antenna position optimization. Additionally, to further reduce antenna movement overhead, a statistical channel-based antenna position optimization approach is proposed, allowing for unchanged APVs over a long time period. Simulation results demonstrate that the proposed CL-MA schemes significantly outperform conventional fixed-position antenna (FPA) systems and closely approach the theoretical lower bound on the total transmit power. Compared to the instantaneous channel-based CL-MA optimization, the statistical channel-based approach incurs a slight performance loss but achieves significantly lower movement overhead, making it an appealing solution for practical wireless systems.

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Cited by 2 Pith papers

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

  1. Wireless Communication with Cross-Linked Rotatable Antenna Array: Architecture Design and Rotation Optimization

    cs.IT 2026-01 conditional novelty 5.0

    A cross-linked rotatable antenna array, whose row and column tracks set each antenna's orientation, nearly matches fully flexible per-antenna rotation in simulated multiuser uplinks with only M+N motors instead of 2MN.

  2. Movable Antenna-Enhanced Secure Communication: Opportunities, Challenges, and Solutions

    cs.IT 2025-08 conditional

    Movable antennas can be repositioned to reduce signal leakage to eavesdroppers and null jammers, and this paper reviews the opportunities, challenges, and open problems.