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Pinching-Antenna Systems (PASS)-based Indoor Positioning
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Pinching-Antenna Systems (PASS)-based Indoor Positioning
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Pinching antenna (PA), a flexible waveguide integrated with dielectric particles, intelligently reconstructs line-of-sight channels. Utilizing its geometric deterministic model and meter-level reconstruction, PA systems (PASS) are applied to uplink indoor positioning. In this paper, the uplink positioning system model for PASS is firstly proposed. A PASS-based received signal strength indication (RSSI) method is proposed to measure the distance from the users to each PA, which is efficient and suitable for PASS. PASS-based weighted least squares (WLS) algorithm is designed to calculate the two-dimensional coordinates of the users. Several critical observations can be drawn from our results: i) More PAs on the waveguide improves the positioning accuracy and robustness. ii) When the number of PAs exceeds a certain threshold, the performance gain becomes marginal. iii) User locations between and near PAs yield superior positioning accuracy.
Forward citations
Cited by 6 Pith papers
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On the Performance of Pinching-Antenna Systems (PASS) Under Dynamic Channels with Blockages
Under a geometry-aware blockage model, pinching-antenna outage and rate are derived, showing NLoS scattering hurts outage but helps rate and can sustain service when LoS is blocked.
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Pinching-Antenna Systems (PASS)-Based User-Side Navigation: An Anchor-Line-based Approach
Users can self-locate to centimeter accuracy from downlink timing and power measurements in a pinching-antenna corridor, jointly estimating unknown antenna positions via Lambert W and weighted least squares.
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Phase-Aware Localization in Pinching Antenna Systems: CRLB Analysis and ML Estimation
Phase-aware localization in pinching antenna systems achieves sub-meter accuracy in simulation, with a closed-form Cramér-Rao bound showing phase information scales as distance^-4 versus amplitude's distance^-6.
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On the Blockage Effect in Pinching-Antenna Systems (PASS)
Obstacles modeled as random cylinders in a Poisson field give closed-form outage and rate formulas for pinching-antenna systems, with the sliding antenna beating a fixed center antenna.
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Integrated Positioning and Communications for PASS: A Robust Approach
Develops MWSP and MWMP positioning algorithms for PASS and analyzes downlink rates under LOS and single-user assumptions, showing geometry and noise trade-offs via numerical results.
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Uplink Positioning for PASS in Multipath Environments
A multipath-robust uplink positioning framework for pinching-antenna systems, with a matrix-pencil ranging algorithm and a low-complexity rank-one variant, plus closed-form variance and position-error-bound analysis.
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