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Pinching-Antenna System (PASS) Enhanced Covert Communications

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arxiv 2504.10442 v1 pith:ZN2VZ7MX submitted 2025-04-14 eess.SP

classification eess.SP
keywords covertpasscommunicationsoptimizationpinchingproposedrateantenna
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A Pinching-Antenna SyStem (PASS)-assisted convert communication framework is proposed. PASS utilizes dielectric waveguides with freely positioned pinching antennas (PAs) to establish strong line-of-sight links. Capitalizing on this high reconfigurable flexibility of antennas, the potential of PASS for covert communications is investigated. 1)~For the single-waveguide single-PA (SWSP) scenario, a closed-form optimal PA position that maximizes the covert rate is first derived. Subsequently, a one-dimensional power search is employed to enable low-complexity optimization for covert communications. With antenna mobility on a scale of meters, PASS can deal with the challenging situation of the eavesdropper enjoying better channel conditions than the legal user. 2)~For the multi-waveguide multi-PA (MWMP) scenario, the positions of multiple PAs are optimized to enable effective pinching beamforming, thereby enhancing the covert rate. To address the resultant multimodal joint transmit and pinching beamforming problem, a twin particle swarm optimization (TwinPSO) approach is proposed. Numerical results demonstrate that: i)~the proposed approaches can effectively resolve the optimization problems; ii)~PASS achieves a higher covert rate than conventional fixed-position antenna architectures; and iii)~with enhanced flexibility, the MWMP setup outperforms the SWSP counterpart.

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Cited by 4 Pith papers

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

  1. Pinching Antenna System (PASS) Enhanced Covert Communications: Against Warden via Sensing

    eess.SP 2025-09 conditional novelty 5.0 of 10

    Sensing-aided covert communication with pinching-antenna systems: an extended Kalman filter tracks a mobile warden via near-field echoes, and beamforming, artificial noise, and antenna placement are jointly optimized ...

  2. Pinching-Antenna Systems for Physical Layer Security

    eess.SP 2025-07 conditional novelty 5.0 of 10

    A Shapley-value-based coalitional game algorithm selects pinching antennas to boost legitimate-user signal and suppress eavesdropper reception, improving simulated secrecy rates.

  3. Pinching-Antenna Systems with In-Waveguide Attenuation: Performance Analysis and Algorithm Design

    eess.SP 2025-06 reject novelty 5.0 of 10

    Pinching-antenna placement must trade free-space path loss against exponential in-waveguide attenuation; the paper gives a closed-form single-user solution and a rate-loss approximation, then extends to multi-user bea...

  4. Joint Beamforming for NOMA Assisted Pinching Antenna Systems (PASS)

    cs.IT 2025-06 conditional novelty 5.0 of 10

    A NOMA-assisted pinching antenna system with jointly optimized antenna positions, transmit beamforming, and power allocation is simulated to reduce downlink transmit power by over 95% versus a fixed massive MIMO-NOMA ...

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