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Predictive Position Control for Movable Antenna Arrays in UAV Communications: A Spatio-Temporal Transformer-LSTM Framework

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arxiv 2508.10720 v1 pith:FW5KS4D4 submitted 2025-08-14 cs.IT math.IT

classification cs.ITmath.IT
keywords antennaarrayscommunicationscontrolenergyflexibilityframeworklink
verification ladder T0 review T1 audit T2 compute T3 formal
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In complex urban environments, dynamic obstacles and multipath effects lead to significant link attenuation and pervasive coverage blind spots. Conventional approaches based on large-scale fixed antenna arrays and UAV trajectory optimization struggle to balance energy efficiency, real-time adaptation, and spatial flexibility. The movable antenna (MA) technology has emerged as a promising solution, offering enhanced spatial flexibility and reduced energy consumption to overcome the bottlenecks of urban low-altitude communications. However, MA deployment faces a critical velocity mismatch between UAV mobility and mechanical repositioning latency, undermining real-time link optimization and security assurance. To overcome this, we propose a predictive MA-UAV collaborative control framework. First, optimal antenna positions are derived via secrecy rate maximization. Second, a Transformer-enhanced long short-term memory (LSTM) network predicts future MA positions by capturing spatio-temporal correlations in antenna trajectories. Extensive simulations demonstrate superior prediction accuracy (NMSE reduction exceeds 49\%) and communication reliability versus current popular benchmarks.

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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. Movable Antenna-Enabled Integrated Sensing and Communication in Low-Altitude UAV Networks

    eess.SP 2026-05 unverdicted novelty 4.0 of 10

    Movable antenna arrays on multiple UAVs, optimized via HDBSCAN clustering and soft actor-critic reinforcement learning, increase total communication rates in dynamic ISAC systems while meeting sensing SNR constraints.

  2. Advancing Fluid Antenna-Assisted Non-Terrestrial Networks in 6G and Beyond: Fundamentals, State of the Art, and Future Directions

    cs.NI 2025-11 unverdicted novelty 1.0 of 10

    A literature survey of fluid-antenna-assisted non-terrestrial networks; it organizes existing results and identifies future directions but proves no new result.

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