Electronically reconfigurable pinching antenna design uses varactor tuning on a waveguide to enable controllable mm-wave radiation points that support links around blockages, demonstrated via full-wave simulations.
Pinching-antenna system design with LoS blockage: Does in-waveguide attenuation matter?
3 Pith papers cite this work. Polarity classification is still indexing.
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eess.SP 3verdicts
UNVERDICTED 3representative citing papers
Pinching-antenna systems achieve lower transmit power than fixed-antenna systems via joint optimization of positions and beamforming under probabilistic LoS blockage, with convexity proven for single-PA cases and efficient algorithms for multiple PAs.
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.
citing papers explorer
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Electronically Reconfigurable Pinching Antennas for Millimeter-Wave Communication in LoS and NLoS Environments
Electronically reconfigurable pinching antenna design uses varactor tuning on a waveguide to enable controllable mm-wave radiation points that support links around blockages, demonstrated via full-wave simulations.
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Power Minimization in Pinching-Antenna Systems under Probabilistic LoS Blockage
Pinching-antenna systems achieve lower transmit power than fixed-antenna systems via joint optimization of positions and beamforming under probabilistic LoS blockage, with convexity proven for single-PA cases and efficient algorithms for multiple PAs.
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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.