Fluid Antenna Array Enhanced Over-the-Air Computation
December 23, 2023 Β· Declared Dead Β· π IEEE Wireless Communications Letters
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Authors
Deyou Zhang, Sicong Ye, Ming Xiao, Kezhi Wang, Marco Di Renzo, Mikael Skoglund
arXiv ID
2312.15244
Category
cs.IT: Information Theory
Cross-listed
eess.SP
Citations
40
Venue
IEEE Wireless Communications Letters
Last Checked
6 months ago
Abstract
Over-the-air computation (AirComp) has emerged as a promising technology for fast wireless data aggregation by harnessing the superposition property of wireless multiple-access channels. This paper investigates a fluid antenna (FA) array-enhanced AirComp system, employing the new degrees of freedom achieved by antenna movements. Specifically, we jointly optimize the transceiver design and antenna position vector (APV) to minimize the mean squared error (MSE) between target and estimated function values. To tackle the resulting highly non-convex problem, we adopt an alternating optimization technique to decompose it into three subproblems. These subproblems are then iteratively solved until convergence, leading to a locally optimal solution. Numerical results show that FA arrays with the proposed transceiver and APV design significantly outperform the traditional fixed-position antenna arrays in terms of MSE.
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