Spacing-controlled radiation in pinching-antenna systems enables higher semantic spectral efficiency for heterogeneous NOMA users while meeting bit-user QoS constraints.
Pinching an- tennas: Principles, applications and challenges
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A two-stage optimization of pinching antenna positions in RSMA multi-carrier systems yields higher sum rates and greater robustness to position inaccuracies than alternative multiple access schemes.
Semantic-aware NOMA in pinching-antenna systems yields higher semantic spectral efficiency than fixed-antenna baselines while satisfying bit-user QoS constraints.
3-D holographic MIMO arrays achieve higher EDOF, narrower beamwidths, and ~20% capacity gains over 2-D baselines in Clarke, Kronecker, and 3GPP urban macro channels when electromagnetic effects are modeled.
citing papers explorer
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Spacing-Based Coupling Radiation Control in Pinching-Antennas Systems for Heterogeneous NOMA Users
Spacing-controlled radiation in pinching-antenna systems enables higher semantic spectral efficiency for heterogeneous NOMA users while meeting bit-user QoS constraints.
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Optimization for Pinching Antennas System With Multiple Carriers and Rate Splitting Multiple Access
A two-stage optimization of pinching antenna positions in RSMA multi-carrier systems yields higher sum rates and greater robustness to position inaccuracies than alternative multiple access schemes.
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Waveguide to Meaning: Semantic-Aware NOMA for Pinching-Antenna Systems
Semantic-aware NOMA in pinching-antenna systems yields higher semantic spectral efficiency than fixed-antenna baselines while satisfying bit-user QoS constraints.
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On Systematic Performance of 3-D Holographic MIMO: Clarke, Kronecker, and 3GPP Models
3-D holographic MIMO arrays achieve higher EDOF, narrower beamwidths, and ~20% capacity gains over 2-D baselines in Clarke, Kronecker, and 3GPP urban macro channels when electromagnetic effects are modeled.