Three correlation-aware port selection schemes (SF-EDAS, SOPS, CC-COAS) are introduced for SM in Tx-SIMO-FAS, with high-SNR analysis deriving diversity order from selected ports, receive antennas, and energy-based spatial DoF plus a Digamma-based array gain approximation.
Fluid antenna systems
3 Pith papers cite this work. Polarity classification is still indexing.
years
2026 3verdicts
UNVERDICTED 3representative citing papers
Derives exact closed-form BLER and rate for FAS-enabled HRLLC with switching delay, proves strict unimodality in port dimension for reliability/rate/energy efficiency, and characterizes a switching-delay threshold for gains over fixed-position antennas.
The paper introduces diffusion FAS, a DDPM-driven spatial selection method that enables generative spatial stealth (up to 100x suppression) and target isolation in object-side ISAC scenarios.
citing papers explorer
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Spatial Modulation for Tx-SIMO-FAS: Port Selection and Performance Analysis
Three correlation-aware port selection schemes (SF-EDAS, SOPS, CC-COAS) are introduced for SM in Tx-SIMO-FAS, with high-SNR analysis deriving diversity order from selected ports, receive antennas, and energy-based spatial DoF plus a Digamma-based array gain approximation.
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Fluid Antenna Systems Enabling 6G HRLLC With Port Switching Delay
Derives exact closed-form BLER and rate for FAS-enabled HRLLC with switching delay, proves strict unimodality in port dimension for reliability/rate/energy efficiency, and characterizes a switching-delay threshold for gains over fixed-position antennas.
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Diffusion Fluid Antenna Systems for Resilient ISAC
The paper introduces diffusion FAS, a DDPM-driven spatial selection method that enables generative spatial stealth (up to 100x suppression) and target isolation in object-side ISAC scenarios.