Theoretical and Experimental Assessment of Large Beam Codebook at mmWave Devices: How Much is Enough?

Fuente: arXiv
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Hauptverfasser: Bozkurt, Bora, Gunel, Hasan Atalay, Chraiti, Mohaned, Hokelek, Ibrahim, Gorcin, Ali, Ghrayeb, Ali
Format: Preprint
Veröffentlicht: 2025
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author Bozkurt, Bora
Gunel, Hasan Atalay
Chraiti, Mohaned
Hokelek, Ibrahim
Gorcin, Ali
Ghrayeb, Ali
author_facet Bozkurt, Bora
Gunel, Hasan Atalay
Chraiti, Mohaned
Hokelek, Ibrahim
Gorcin, Ali
Ghrayeb, Ali
contents Modern millimeter wave (mmWave) transceivers come with a large number of antennas, each of which can support thousands of phase shifter configurations. This capability enables beam sweeping with fine angular resolution, but results in large codebook sizes that can span more than six orders of magnitude. On the other hand, the mobility of user terminals and their randomly changing orientations require constantly adjusting the beam direction. A key focus of recent research has been on the design of beam sweeping codebooks that balance a trade-off between the achievable gain and the beam search time, governed by the codebook size. In this paper, we investigate the extent to which a large codebook can be reduced to fewer steering vectors while covering the entire angular space and maintaining performance close to the maximum array gain. We derive a closed-form expression for the angular coverage range of a steering vector, subject to maintaining a gain loss within \(γ\) dB (e.g., 2\, dB) with respect to the maximum gain achieved by an infinitely large codebook. We demonstrate, both theoretically and experimentally, that a large beam-steering codebooks (such as the \(1024^{16}\) set considered in our experiment) can be reduced to just a few steering vectors. This framework serves as a proof that only a few steering vectors are sufficient to achieve near-maximum gain, challenging the common belief that a large codebook with fine angular resolution is essential to fully reap the benefits of an antenna array.
format Preprint
id arxiv_https___arxiv_org_abs_2505_09162
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Theoretical and Experimental Assessment of Large Beam Codebook at mmWave Devices: How Much is Enough?
Bozkurt, Bora
Gunel, Hasan Atalay
Chraiti, Mohaned
Hokelek, Ibrahim
Gorcin, Ali
Ghrayeb, Ali
Information Theory
Signal Processing
Modern millimeter wave (mmWave) transceivers come with a large number of antennas, each of which can support thousands of phase shifter configurations. This capability enables beam sweeping with fine angular resolution, but results in large codebook sizes that can span more than six orders of magnitude. On the other hand, the mobility of user terminals and their randomly changing orientations require constantly adjusting the beam direction. A key focus of recent research has been on the design of beam sweeping codebooks that balance a trade-off between the achievable gain and the beam search time, governed by the codebook size. In this paper, we investigate the extent to which a large codebook can be reduced to fewer steering vectors while covering the entire angular space and maintaining performance close to the maximum array gain. We derive a closed-form expression for the angular coverage range of a steering vector, subject to maintaining a gain loss within \(γ\) dB (e.g., 2\, dB) with respect to the maximum gain achieved by an infinitely large codebook. We demonstrate, both theoretically and experimentally, that a large beam-steering codebooks (such as the \(1024^{16}\) set considered in our experiment) can be reduced to just a few steering vectors. This framework serves as a proof that only a few steering vectors are sufficient to achieve near-maximum gain, challenging the common belief that a large codebook with fine angular resolution is essential to fully reap the benefits of an antenna array.
title Theoretical and Experimental Assessment of Large Beam Codebook at mmWave Devices: How Much is Enough?
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2505.09162