Channel Measurements and Modeling for Dynamic Vehicular ISAC Scenarios at 28 GHz

Fuente: arXiv
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Main Authors: Zhang, Zhengyu, He, Ruisi, Ai, Bo, Yang, Mi, Zhang, Xuejian, Qi, Ziyi, Yuan, Yuan
Format: Preprint
Published: 2024
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author Zhang, Zhengyu
He, Ruisi
Ai, Bo
Yang, Mi
Zhang, Xuejian
Qi, Ziyi
Yuan, Yuan
author_facet Zhang, Zhengyu
He, Ruisi
Ai, Bo
Yang, Mi
Zhang, Xuejian
Qi, Ziyi
Yuan, Yuan
contents Integrated sensing and communication (ISAC) is a promising technology for 6G, with the goal of providing end-to-end information processing and inherent perception capabilities for future communication systems. Within ISAC emerging application scenarios, vehicular ISAC technologies have the potential to enhance traffic efficiency and safety through integration of communication and synchronized perception abilities. To establish a foundational theoretical support for vehicular ISAC system design and standardization, it is necessary to conduct channel measurements, and modeling to obtain a deep understanding of the radio propagation. In this paper, a dynamic statistical channel model is proposed for vehicular ISAC scenarios, incorporating Sensing Multipath Components (S-MPCs) and Clutter Multipath Components (C-MPCs), which are identified by the proposed tracking algorithm. Based on actual vehicular ISAC channel measurements at 28 GHz, time-varying sensing characteristics in front, left, and right directions are investigated. To model the dynamic evolution process of channel, number of new S-MPCs, lifetimes, initial power and delay positions, dynamic variations within their lifetimes, clustering, power decay, and fading of C-MPCs are statistically characterized. Finally, the paper provides implementation of dynamic vehicular ISAC model and validates it by comparing key simulation statistics between measurements and simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2403_00605
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Channel Measurements and Modeling for Dynamic Vehicular ISAC Scenarios at 28 GHz
Zhang, Zhengyu
He, Ruisi
Ai, Bo
Yang, Mi
Zhang, Xuejian
Qi, Ziyi
Yuan, Yuan
Signal Processing
Integrated sensing and communication (ISAC) is a promising technology for 6G, with the goal of providing end-to-end information processing and inherent perception capabilities for future communication systems. Within ISAC emerging application scenarios, vehicular ISAC technologies have the potential to enhance traffic efficiency and safety through integration of communication and synchronized perception abilities. To establish a foundational theoretical support for vehicular ISAC system design and standardization, it is necessary to conduct channel measurements, and modeling to obtain a deep understanding of the radio propagation. In this paper, a dynamic statistical channel model is proposed for vehicular ISAC scenarios, incorporating Sensing Multipath Components (S-MPCs) and Clutter Multipath Components (C-MPCs), which are identified by the proposed tracking algorithm. Based on actual vehicular ISAC channel measurements at 28 GHz, time-varying sensing characteristics in front, left, and right directions are investigated. To model the dynamic evolution process of channel, number of new S-MPCs, lifetimes, initial power and delay positions, dynamic variations within their lifetimes, clustering, power decay, and fading of C-MPCs are statistically characterized. Finally, the paper provides implementation of dynamic vehicular ISAC model and validates it by comparing key simulation statistics between measurements and simulations.
title Channel Measurements and Modeling for Dynamic Vehicular ISAC Scenarios at 28 GHz
topic Signal Processing
url https://arxiv.org/abs/2403.00605