Terahertz channel performance under dynamic water surface reflections

Fuente: arXiv
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Hauptverfasser: Ge, Yapeng, Liu, Jiacheng, Cui, Jiayuan, Zhang, Mingxia, Liu, Wenbo, Li, Peian, Sun, Houjun, Ma, Jianjun
Format: Preprint
Veröffentlicht: 2025
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author Ge, Yapeng
Liu, Jiacheng
Cui, Jiayuan
Zhang, Mingxia
Liu, Wenbo
Li, Peian
Sun, Houjun
Ma, Jianjun
author_facet Ge, Yapeng
Liu, Jiacheng
Cui, Jiayuan
Zhang, Mingxia
Liu, Wenbo
Li, Peian
Sun, Houjun
Ma, Jianjun
contents As the terahertz (THz) band emerges as a pivotal technology for next-generation wireless communications, accurate channel modeling in dynamic environments becomes increasingly critical, particularly for scenarios involving reflective interactions with water surfaces. This article presents comprehensive experimental and theoretical investigations into THz channel (120-320 GHz) performance under dynamic water surface reflections. By developing and validating a modified dual-scale scattering model based on the improved integral equation model (I2EM), this work systematically evaluates channel characteristics, such as signal power loss and bit error rate (BER), across various dynamic aquatic scenarios. Laboratory experiments and real-world natatorium measurements demonstrate the model's efficacy in capturing complex temporal and spatial scattering behaviors, offering vital insights and robust predictive capabilities essential for deploying possible THz communication systems in aquatic and sports environments.
format Preprint
id arxiv_https___arxiv_org_abs_2506_18358
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Terahertz channel performance under dynamic water surface reflections
Ge, Yapeng
Liu, Jiacheng
Cui, Jiayuan
Zhang, Mingxia
Liu, Wenbo
Li, Peian
Sun, Houjun
Ma, Jianjun
Applied Physics
As the terahertz (THz) band emerges as a pivotal technology for next-generation wireless communications, accurate channel modeling in dynamic environments becomes increasingly critical, particularly for scenarios involving reflective interactions with water surfaces. This article presents comprehensive experimental and theoretical investigations into THz channel (120-320 GHz) performance under dynamic water surface reflections. By developing and validating a modified dual-scale scattering model based on the improved integral equation model (I2EM), this work systematically evaluates channel characteristics, such as signal power loss and bit error rate (BER), across various dynamic aquatic scenarios. Laboratory experiments and real-world natatorium measurements demonstrate the model's efficacy in capturing complex temporal and spatial scattering behaviors, offering vital insights and robust predictive capabilities essential for deploying possible THz communication systems in aquatic and sports environments.
title Terahertz channel performance under dynamic water surface reflections
topic Applied Physics
url https://arxiv.org/abs/2506.18358