This paper introduces a methodology to calibrate Radio-Frequency Digital Twins (RF-DTs) for Integrated Sensing and Communication (ISAC) in dynamic wireless environments. The approach leverages high-resolution ray tracing in combination with wideband channel sounding to ensure consistency between simulated and measured propagation. The methodology is validated in urban scenarios featuring both mono-static and bi-static configurations, as well as moving user platforms and vehicles. Results show that the calibrated RF-DT reproduces key propagation effects, including multipath evolution, dynamic scatterers, and Doppler-induced signatures, with close agreement to measurements. These findings confirm that accurate geometry, material modeling, antenna patterns, and diffuse scattering are essential for realistic high-frequency ISAC simulation. By bridging the gap between simulation and measurement, the proposed calibration framework provides a scalable tool for developing and evaluating ISAC algorithms in complex, time-varying environments envisioned for 6G.
@article{arxiv.2603.28736,
title = {Deterministic Modeling of Dynamic ISAC Channels in RF Digital Twin Environments},
author = {Cesar Montaner and Saúl Fenollosa and Andres Ortega and Hugo Beltrán and Narcis Cardona},
journal= {arXiv preprint arXiv:2603.28736},
year = {2026}
}
Comments
5 pages, 6 figures, 2 tables. Accepted for publication at the 2026 20th European Conference on Antennas and Propagation (EuCAP)