Beam Calibration for RIS-Aided Positioning: Modeling and Performance Analysis
Journal article, 2025

High-accuracy positioning plays an essential role in various applications such as autonomous driving, augmented reality. Antenna arrays and reconfigurable intelligent surface (RIS) are incorporated into positioning systems to achieve high angular resolution, assisting in the localization process. However, array and RIS beam patterns in practice often deviate from the idealized models used for algorithm design, leading to significant degradation in positioning accuracy. This mismatch highlights the need for beam calibration to bridge the gap between theoretical models and real-world hardware behavior. In this paper, we present three beam models considering non-idealities such as mutual coupling, non-ideal codebook, and measurement uncertainties. Based on the models, we then develop calibration algorithms to estimate the model parameters that can be used for future positioning tasks. This work evaluates the effectiveness of the beam models and the calibration algorithms using both theoretical bounds and measured beam patterns of an RIS prototype. The simulation results show that the model incorporating combined impacts can accurately reconstruct measured beam patterns and reduce the positioning error to sub-meter level. This highlights the necessity of beam calibration to achieve high-accuracy positioning.

theoretical bound

Positioning

RIS

calibration

Author

Mengting Li

Aalborg University

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Hui Chen

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Sigurd S. Petersen

Aalborg University

Huiping Huang

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Alireza Pourafzal

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Yu Ge

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Ming Shen

Aalborg University

Henk Wymeersch

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

IEEE Globecom Workshops GC Wkshps

21660069 (ISSN) 21660077 (eISSN)

2025 369-374

6G DISAC

European Commission (EC) (101139130-6G-DISAC), 2024-01-01 -- 2026-12-31.

Hardware-aware Integrated Localization and Sensing for Communication Systems

Swedish Research Council (VR) (2022-03007), 2023-01-01 -- 2026-12-31.

Subject Categories (SSIF 2025)

Communication Systems

Telecommunications

Signal Processing

DOI

10.1109/GCWkshps68340.2025.11590972

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8/3/2026 1