Measurement-Based Validation of Geometry-Driven RIS Beam Steering in Industrial Environments

Fuente: arXiv
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Main Authors: Umra, Adam, Tewes, Simon, Beckmann, Niklas, König, Niels, Sezgin, Aydin, Schmitt, Robert
Format: Preprint
Published: 2026
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author Umra, Adam
Tewes, Simon
Beckmann, Niklas
König, Niels
Sezgin, Aydin
Schmitt, Robert
author_facet Umra, Adam
Tewes, Simon
Beckmann, Niklas
König, Niels
Sezgin, Aydin
Schmitt, Robert
contents Reconfigurable intelligent surfaces (RISs) offer programmable control of radio propagation for future wireless systems. For configuration, geometry-driven analytical approaches are appealing for their simplicity and real-time operation, but their performance in challenging environments such as industrial halls with dense multipath and metallic scattering is not well established. To this end, we present a measurement-based evaluation of geometry-driven RIS beam steering in a large industrial hall using a 5 GHz RIS prototype. A novel RIS configuration is proposed in which four patch antennas are mounted in close proximity in front of the RIS to steer the incident field and enable controlled reflection. For this setup, analytically computed, quantized configurations are implemented. Two-dimensional received power maps from two measurement areas reveal consistent, spatially selective focusing. Configurations optimized near the receiver produce clear power maxima, while steering to offset locations triggers a rapid 20-30 dB reduction. With increasing RIS-receiver distance, elevation selectivity broadens due to finite-aperture and geometric constraints, while azimuth steering remains robust. These results confirm the practical viability of geometry-driven RIS beam steering in industrial environments and support its use for spatial field control and localization under non-ideal propagation.
format Preprint
id arxiv_https___arxiv_org_abs_2602_15808
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Measurement-Based Validation of Geometry-Driven RIS Beam Steering in Industrial Environments
Umra, Adam
Tewes, Simon
Beckmann, Niklas
König, Niels
Sezgin, Aydin
Schmitt, Robert
Signal Processing
Reconfigurable intelligent surfaces (RISs) offer programmable control of radio propagation for future wireless systems. For configuration, geometry-driven analytical approaches are appealing for their simplicity and real-time operation, but their performance in challenging environments such as industrial halls with dense multipath and metallic scattering is not well established. To this end, we present a measurement-based evaluation of geometry-driven RIS beam steering in a large industrial hall using a 5 GHz RIS prototype. A novel RIS configuration is proposed in which four patch antennas are mounted in close proximity in front of the RIS to steer the incident field and enable controlled reflection. For this setup, analytically computed, quantized configurations are implemented. Two-dimensional received power maps from two measurement areas reveal consistent, spatially selective focusing. Configurations optimized near the receiver produce clear power maxima, while steering to offset locations triggers a rapid 20-30 dB reduction. With increasing RIS-receiver distance, elevation selectivity broadens due to finite-aperture and geometric constraints, while azimuth steering remains robust. These results confirm the practical viability of geometry-driven RIS beam steering in industrial environments and support its use for spatial field control and localization under non-ideal propagation.
title Measurement-Based Validation of Geometry-Driven RIS Beam Steering in Industrial Environments
topic Signal Processing
url https://arxiv.org/abs/2602.15808