Maximizing the network outage rate for fast fluid antenna multiple access systems

Author:

Wong Kai‐Kit1ORCID,Tong Kin‐Fai1ORCID,Chen Yu2,Zhang Yangyang3

Affiliation:

1. Department of Electronic and Electrical Engineering University College London London UK

2. School of Information and Communication Engineering (SICE) Beijing University of Posts and Telecommunications Beijing China

3. Kuang‐Chi Science Limited Hong Kong SAR China

Abstract

AbstractUsing reconfigurable fluid antennas, it is possible to have a software‐controlled position‐tuneable antenna to realize spatial diversity and multiplexing gains that are previously only possible using multiple antennas. Recent results illustrated that fast fluid antenna multiple access (f‐FAMA) which always tunes the antenna to the position for maximum signal‐to‐interference ratio (SIR) on a symbol‐by‐symbol basis, could support hundreds of users on the same radio channel, all by a single fluid antenna at each user without complex coordination and optimization. The network outage rate, nevertheless, depends on the SIR threshold chosen for each user. Motivated by this, this paper adopts a first‐order approximation to obtain the outage probability expression from which a closed‐form solution is derived for optimizing the SIR threshold in maximizing the network outage rate. Moreover, a closed‐form expression is provided to estimate the number of users in thef‐FAMA network in which the outage rate begins to plateau. Numerical results show that the proposed SIR threshold achieves near‐maximal outage rate performance.

Funder

Engineering and Physical Sciences Research Council

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering,Computer Science Applications

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