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Blind Beamforming for Coverage Enhancement with Intelligent Reflecting Surface

Information Theory 2024-07-18 v1 Signal Processing math.IT

Abstract

Conventional policy for configuring an intelligent reflecting surface (IRS) typically requires channel state information (CSI), thus incurring substantial overhead costs and facing incompatibility with the current network protocols. This paper proposes a blind beamforming strategy in the absence of CSI, aiming to boost the minimum signal-to-noise ratio (SNR) among all the receiver positions, namely the coverage enhancement. Although some existing works already consider the IRS-assisted coverage enhancement without CSI, they assume certain position-channel models through which the channels can be recovered from the geographic locations. In contrast, our approach solely relies on the received signal power data, not assuming any position-channel model. We examine the achievability and converse of the proposed blind beamforming method. If the IRS has NN reflective elements and there are UU receiver positions, then our method guarantees the minimum SNR of Ω(N2/U)\Omega(N^2/U) -- which is fairly close to the upper bound O(N+N2ln(NU)/U4)O(N+N^2\sqrt{\ln (NU)}/\sqrt[4]{U}). Aside from the simulation results, we justify the practical use of blind beamforming in a field test at 2.6 GHz. According to the real-world experiment, the proposed blind beamforming method boosts the minimum SNR across seven random positions in a conference room by 18.22 dB, while the position-based method yields a boost of 12.08 dB.

Keywords

Cite

@article{arxiv.2407.12648,
  title  = {Blind Beamforming for Coverage Enhancement with Intelligent Reflecting Surface},
  author = {Fan Xu and Jiawei Yao and Wenhai Lai and Kaiming Shen and Xin Li and Xin Chen and Zhi-Quan Luo},
  journal= {arXiv preprint arXiv:2407.12648},
  year   = {2024}
}

Comments

17 pages

R2 v1 2026-06-28T17:44:35.596Z