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Enhanced Over-the-Air Federated Learning Using AI-based Fluid Antenna System

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arxiv 2407.03481 v2 pith:2EVCOANL submitted 2024-07-03 eess.SP

classification eess.SP
keywords systemlearningota-flalgorithmantennaantennasfederatedfluid
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This paper investigates an over-the-air federated learning (OTA-FL) system that employs fluid antennas (FAs) at an access point. The system enhances learning performance by leveraging the additional degrees of freedom provided by antenna mobility. We analyze the convergence of the OTA-FL system and derive the optimality gap to illustrate the influence of FAs on learning performance. With these results, we formulate a nonconvex optimization problem to minimize the optimality gap by jointly optimizing the positions of the FAs, the beamforming vector, and the transmit power allocation at each user. To address the dynamic environment, we cast this optimization problem as a Markov decision process and propose the recurrent deterministic policy gradient (RDPG) algorithm. Finally, extensive simulations show that the FA-assisted OTA-FL system outperforms systems with fixed-position antennas and that the RDPG algorithm surpasses the existing methods.

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Cited by 2 Pith papers

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

  1. Dependability Theory-based Statistical QoS Provisioning of Fluid Antenna Systems

    eess.SP 2025-07 conditional novelty 6.0 of 10

    Closed-form level-crossing rate and average fade duration for N-port fluid antenna systems over Nakagami-m fading, plus mission-aware effective capacity and energy efficiency metrics.

  2. Integrated Sensing, Communication, and Over-The-Air Control of UAV Swarm Dynamics

    eess.SP 2025-02 conditional novelty 6.0 of 10

    A single base station can jointly perform over-the-air coordinated UAV control and object sensing on the same spectrum by designing BS-side post-processing and precoding matrices.

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