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20242026
most citedDimensional Scaling Laws for Continuous Fluid Antenna Systems

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eess.SP2026

Spatial Limits of Fluid Antenna Systems

Amy S. Inwood, Peter J. Smith, Rajitha Senanayake +1

Continuous fluid antenna systems (CFASs) represent an upper bound on the spatial diversity performance of fluid antenna systems (FASs), achieved when antennas may be positioned any…

eess.SP2026

Analysis of Fluid Antenna Systems with Continuous Positioning and Spatial Correlation

Gayani Siriwardana, Peter J. Smith, Himal A. Suraweera +1

We analyze multi-user fluid antenna systems with continuous positioning over a track of length L under a spatial correlation model, where exact performance distributions become ana…

eess.SP2026

Performance Analysis of Movable Antenna Arrays

Gayani Siriwardana, Peter J. Smith, Himal A. Suraweera +1

This paper provides a thorough mathematical analysis of continuous movable antenna (MA) arrays. Focusing on the multiple antenna case, we consider a linear antenna array with multi…

eess.SP2026

Deep Learning-Based Computer Vision for Beam Selection and Proactive Blockage Prediction

Sachira Karunasena, Erfan Khordad, Tom Drummond +1

Millimeter-wave communication faces two critical challenges: propagation losses requiring costly narrow-beam alignment, and penetration losses causing link failures from blocked li…

eess.SP2026

Beam Squinting Effects in Super Wideband Communication Systems

Sachitha C. Bandara, Peter J. Smith, Erfan Khordad +3

Beam squint, the frequency-dependent shift of the main beam, poses a major challenge for wideband antenna arrays. This paper focuses on the beam squint effects in super wideband (S…

eess.SP20262 cited

Dimensional Scaling Laws for Continuous Fluid Antenna Systems

Peter J. Smith, Amy S. Inwood, Michail Matthaiou +1

Consider the signal-to-noise ratio (SNR) of a continuous fluid antenna system (CFAS) operating over a Rayleigh fading channel. In this paper, we extend traditional system assumptio…