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Multiuser Communications with Movable-Antenna Base Station Via Antenna Position Optimization

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arxiv 2308.05546 v1 pith:YBM2WJQV submitted 2023-08-10 cs.IT eess.SPmath.IT

classification cs.ITeess.SPmath.IT
keywords optimizationmultiuserantennamultipleparticlepositionpowerrate
verification ladder T0 review T1 audit T2 compute T3 formal
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This paper studies the deployment of multiple movable antennas (MAs) at the base station (BS) for enhancing the multiuser communication performance. First, we model the multiuser channel in the uplink to characterize the wireless channel variation caused by MAs' movement at the BS. Then, an optimization problem is formulated to maximize the minimum achievable rate among multiple users for MA-aided uplink multiuser communications by jointly optimizing the MAs' positions, their receive combining at the BS, and the transmit power of users, under the constraints of finite moving region of MAs, minimum inter-MA distance, and maximum transmit power of each user. To solve this challenging non-convex optimization problem, a two-loop iterative algorithm is proposed by leveraging the particle swarm optimization (PSO) method. Specifically, the outer-loop updates the positions of a set of particles, where each particle's position represents one realization of the antenna positioning vector (APV) of all MAs. The inner-loop implements the fitness evaluation for each particle in terms of the max-min achievable rate of multiple users with its corresponding APV, where the receive combining matrix of the BS and the transmit power of each user are optimized by applying the block coordinate descent (BCD) technique. Simulation results show that the antenna position optimization for MAs-aided BS can significantly improve the rate performance as compared to conventional BS with fixed-position antennas (FPAs).

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Cited by 1 Pith paper

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

  1. Flexible Cylindrical Arrays with Movable Antennas for MISO System: Beamforming and Position Optimization

    eess.SP 2025-01 conditional novelty 5.0 of 10

    Movable antennas on a cylindrical array, optimized with fractional programming and a constrained Adam algorithm, are simulated to improve multi-user sum rate by up to 31% over fixed antennas.

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