English

Optimizing Movable Antennas in Wideband Multi-User MIMO With Hardware Impairments

Information Theory 2025-06-03 v2 Signal Processing math.IT

Abstract

Movable antennas represent an emerging field in telecommunication research and a potential approach to achieving higher data rates in multiple-input multiple-output (MIMO) communications when the total number of antennas is limited. Most solutions and analyses to date have been limited to \emph{narrowband} setups. This work complements the prior studies by quantifying the benefit of using movable antennas in \emph{wideband} MIMO communication systems. First, we derive a novel uplink wideband system model that also accounts for distortion from transceiver hardware impairments. We then formulate and solve an optimization task to maximize the average sum rate by adjusting the antenna positions using particle swarm optimization. Finally, the performance with movable antennas is compared with fixed uniform arrays and the derived theoretical upper bound. The numerical study concludes that the data rate improvement from movable antennas over other arrays heavily depends on the level of hardware impairments, the richness of the multi-path environments, and the number of subcarriers. The present study provides vital insights into the most suitable use cases for movable antennas in future wideband systems.

Keywords

Cite

@article{arxiv.2504.12885,
  title  = {Optimizing Movable Antennas in Wideband Multi-User MIMO With Hardware Impairments},
  author = {Amna Irshad and Emil Björnson and Alva Kosasih and Vitaly Petrov},
  journal= {arXiv preprint arXiv:2504.12885},
  year   = {2025}
}

Comments

To appear at 2025 IEEE International Workshop on Signal Processing and Artificial Intelligence for Wireless Communications (SPAWC), 5 pages, 6 figures

R2 v1 2026-06-28T23:01:57.699Z