Derives closed-form Rayleigh distribution for minimum inter-port distance in planar fluid antenna arrays (scaling O(M^{-1})) and a 2x2 geometric inertia matrix governing universal CRB for joint elevation-azimuth estimation, with invariance to azimuth and a precision-ambiguity trade-off.
Finite-blocklength fluid antenna systems
4 Pith papers cite this work. Polarity classification is still indexing.
fields
cs.IT 4years
2026 4verdicts
UNVERDICTED 4representative citing papers
PUMA integrates phased arrays with fluid antennas at UEs for analog-domain interference mitigation and high gain using minimal RF chains, claiming superior data rates over FAMA and CUMA in theoretical analysis and simulations for 6G.
A jointly correlated dual-side fluid antenna channel model yields a derived ergodic capacity expression and tight closed-form upper bound, plus an iterative algorithm for optimal power allocation.
An improved genetic algorithm optimizes port activation in planar fluid antenna arrays to achieve 4.45 dB lower peak sidelobe levels than canonical GA under sparsity constraints.
citing papers explorer
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Finite-Aperture Planar Fluid Antenna Array
Derives closed-form Rayleigh distribution for minimum inter-port distance in planar fluid antenna arrays (scaling O(M^{-1})) and a 2x2 geometric inertia matrix governing universal CRB for joint elevation-azimuth estimation, with invariance to azimuth and a precision-ambiguity trade-off.
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Phased Ultra Massive Array (PUMA)
PUMA integrates phased arrays with fluid antennas at UEs for analog-domain interference mitigation and high gain using minimal RF chains, claiming superior data rates over FAMA and CUMA in theoretical analysis and simulations for 6G.
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Jointly Correlated Dual-Side Fluid Antenna System
A jointly correlated dual-side fluid antenna channel model yields a derived ergodic capacity expression and tight closed-form upper bound, plus an iterative algorithm for optimal power allocation.
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Peak Sidelobe Suppression in Planar Fluid Antenna Array
An improved genetic algorithm optimizes port activation in planar fluid antenna arrays to achieve 4.45 dB lower peak sidelobe levels than canonical GA under sparsity constraints.