English

The Future is Fluid: Revolutionizing DOA Estimation with Sparse Fluid Antennas

Signal Processing 2025-08-15 v1

Abstract

This paper investigates a design framework for sparse fluid antenna systems (FAS) enabling high-performance direction-of-arrival (DOA) estimation, particularly in challenging millimeter-wave (mmWave) environments. By ingeniously harnessing the mobility of fluid antenna (FA) elements, the proposed architectures achieve an extended range of spatial degrees of freedom (DoF) compared to conventional fixed-position antenna (FPA) arrays. This innovation not only facilitates the seamless application of super-resolution DOA estimators but also enables robust DOA estimation, accurately localizing more sources than the number of physical antenna elements. We introduce two bespoke FA array structures and mobility strategies tailored to scenarios with aligned and misaligned received signals, respectively, demonstrating a hardware-driven approach to overcoming complexities typically addressed by intricate algorithms. A key contribution is a light-of-sight (LoS)-centric, closed-form DOA estimator, which first employs an eigenvalue-ratio test for precise LoS path number detection, followed by a polynomial root-finding procedure. This method distinctly showcases the unique advantages of FAS by simplifying the estimation process while enhancing accuracy. Numerical results compellingly verify that the proposed FA array designs and estimation techniques yield an extended DoF range, deliver superior DOA accuracy, and maintain robustness across diverse signal conditions.

Keywords

Cite

@article{arxiv.2508.10826,
  title  = {The Future is Fluid: Revolutionizing DOA Estimation with Sparse Fluid Antennas},
  author = {He Xu and Tuo Wu and Ye Tian and Ming Jin and Wei Liu and Qinghua Guo and Maged Elkashlan and Matthew C. Valenti and Chan-Byoung Chae and Kin-Fai Tong and Kai-Kit Wong},
  journal= {arXiv preprint arXiv:2508.10826},
  year   = {2025}
}

Comments

13 pages

R2 v1 2026-07-01T04:50:17.298Z