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Physical Layer Security for Pinching-Antenna Systems (PASS)
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The pinching-antenna system (PASS) introduces new degrees of freedom (DoFs) for physical layer security (PLS) through pinching beamforming. In this paper, a couple of scenarios for secure beamforming for PASS are studied. 1) For the case with a single legitimate user (Bob) and a single eavesdropper (Eve), a closed-form expression for the optimal baseband beamformer is derived. On this basis, a gradient-based method is proposed to optimize the activated positions of pinching antennas (PAs). 2) For the case with multiple Bobs and multiple Eves, a fractional programming (FP)-based block coordinate descent (BCD) algorithm, termed FP-BCD, is proposed for optimizing the weighted secrecy sum-rate (WSSR). Specifically, a closed-form baseband beamformer is obtained via Lagrange multiplier method. Furthermore, owing to the non-convex objective function exhibiting numerous stationary points, a low-complexity one-dimensional search is used to find a high-quality solution of the PAs' activated locations. Numerical results are provided to demonstrate that: i) All proposed algorithms achieve stable convergence within a few iterations, ii) across all considered power ranges, the FP-BCD algorithm outperforms baseline methods using zero-forcing (ZF) and maximal-ratio transmission (MRT) beamforming in terms of the WSSR, and iii) PASS achieves a significantly higher secrecy rate than traditional fixed-antenna systems.
Forward citations
Cited by 4 Pith papers
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Dual-Waveguide Pinching Antennas for PLS: Parallel Placement or Orthogonal Placement?
For dual-waveguide pinching-antenna systems, an FeaPSO/SCA algorithm maximizes secure rate and energy efficiency, and orthogonal waveguide placement offers a modest, scenario-dependent security advantage over parallel...
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Pinching Antenna System (PASS) Enhanced Covert Communications: Against Warden via Sensing
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 ...
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Pinching-Antenna Systems for Physical Layer Security
A Shapley-value-based coalitional game algorithm selects pinching antennas to boost legitimate-user signal and suppress eavesdropper reception, improving simulated secrecy rates.
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Resource Allocation for Pinching-Antenna Systems: State-of-the-Art, Key Techniques and Open Issues
A comprehensive survey of resource allocation for pinching-antenna systems, with numerical case studies illustrating gains over fixed-antenna baselines.
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