A Geometry Map-Based Site-Specific Propagation Channel Model for Urban Scenarios

Fuente: arXiv
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Autori principali: Song, Junzhe, He, Ruisi, Yang, Mi, Zhang, Zhengyu, Gao, Shuaiqi, Zhang, Xiaoying, Ai, Bo
Natura: Preprint
Pubblicazione: 2025
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author Song, Junzhe
He, Ruisi
Yang, Mi
Zhang, Zhengyu
Gao, Shuaiqi
Zhang, Xiaoying
Ai, Bo
author_facet Song, Junzhe
He, Ruisi
Yang, Mi
Zhang, Zhengyu
Gao, Shuaiqi
Zhang, Xiaoying
Ai, Bo
contents With the rapid deployments of 5G and 6G networks, accurate modeling of urban radio propagation has become critical for system design and network planning. However, conventional statistical or empirical models fail to fully capture the influence of detailed geometric features on site-specific channel variances in dense urban environments. In this paper, we propose a geometry map-based propagation channel model that directly extracts key parameters from a 3D geometry map and incorporates the Uniform Theory of Diffraction (UTD) to recursively compute multiple diffraction fields, thereby enabling accurate prediction of site-specific large-scale path loss and time-varying Doppler characteristics in urban scenarios. A well-designed identification algorithm is developed to efficiently detect buildings that significantly affect signal propagation. The proposed model is validated using urban measurement data, showing excellent agreement of path loss in both line-of-sight (LOS) and nonline-of-sight (NLOS) conditions. In particular, for NLOS scenarios with complex diffractions, it outperforms the 3GPP and simplified models, reducing the RMSE by 7.1 dB and 3.18 dB, respectively. Doppler analysis further demonstrates its accuracy in capturing time-varying propagation characteristics, confirming the scalability and generalization of the model in urban environments.
format Preprint
id arxiv_https___arxiv_org_abs_2511_11386
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Geometry Map-Based Site-Specific Propagation Channel Model for Urban Scenarios
Song, Junzhe
He, Ruisi
Yang, Mi
Zhang, Zhengyu
Gao, Shuaiqi
Zhang, Xiaoying
Ai, Bo
Signal Processing
With the rapid deployments of 5G and 6G networks, accurate modeling of urban radio propagation has become critical for system design and network planning. However, conventional statistical or empirical models fail to fully capture the influence of detailed geometric features on site-specific channel variances in dense urban environments. In this paper, we propose a geometry map-based propagation channel model that directly extracts key parameters from a 3D geometry map and incorporates the Uniform Theory of Diffraction (UTD) to recursively compute multiple diffraction fields, thereby enabling accurate prediction of site-specific large-scale path loss and time-varying Doppler characteristics in urban scenarios. A well-designed identification algorithm is developed to efficiently detect buildings that significantly affect signal propagation. The proposed model is validated using urban measurement data, showing excellent agreement of path loss in both line-of-sight (LOS) and nonline-of-sight (NLOS) conditions. In particular, for NLOS scenarios with complex diffractions, it outperforms the 3GPP and simplified models, reducing the RMSE by 7.1 dB and 3.18 dB, respectively. Doppler analysis further demonstrates its accuracy in capturing time-varying propagation characteristics, confirming the scalability and generalization of the model in urban environments.
title A Geometry Map-Based Site-Specific Propagation Channel Model for Urban Scenarios
topic Signal Processing
url https://arxiv.org/abs/2511.11386