300 ghz波段植被衰减特性评价

IF 3.5 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Keisuke Matsui;Hiroaki Nakabayashi;Akihiko Hirata
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引用次数: 0

摘要

本文研究了300 GHz波段植被损失的季节变化和树叶移动对信号传播的影响。在按植被损失最大的月份调整参数时,各季节植被损失的变化与ITU-R模型非常吻合。在无叶季节,缓慢衰落的特征是频率成分低于0.2 Hz,主要是由于风引起的树枝振动。在树叶持续阻挡发射器和接收器之间的视线(准视线,QLOS)的环境中,由于树叶的运动而发生快速衰落,频率成分高达20 Hz。植被损失的缓慢和快速衰落模式都近似于中上分布。相反,当树叶稀疏,风导致视线和QLOS条件之间的间歇性变化时,无论是专家模型还是Nakagami模型都不能充分代表实验数据。这种差异主要是由于中值植被损失值的显著变化取决于繁殖路径是否被树叶阻挡。该研究为300 GHz频段植被引起的信号衰落动力学提供了新的见解,并证明了季节变化对传播特性的显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Vegetation Attenuation Characteristics at the 300-GHz Band
This study examines the seasonal variation in vegetation loss and the effects of moving foliage on signal propagation at the 300 GHz band. The variation in vegetation loss across seasons aligns well with the ITU-R model when parameters are adjusted for the month exhibiting maximum vegetation loss. During leafless seasons, slow fading is characterized by a frequency component below 0.2 Hz and occurs predominantly due to branch vibrations caused by wind. In environments where foliage consistently obstructs the line of sight between transmitter and receiver (quasi-line-of-sight, QLOS), rapid fading occurs due to foliage movement, with frequency components reaching up to 20 Hz. Both slow and rapid fading patterns in vegetation loss approximate the Nakagami distribution. Conversely, when foliage is sparse and wind causes intermittent shifts between line-of-sight and QLOS conditions, neither the Rician nor Nakagami models adequately represent the experimental data. This discrepancy is primarily due to significant variations in median vegetation loss values depending on whether the propagation path is obstructed by foliage. This study provides new insights into the dynamics of vegetation-induced signal fading at the 300 GHz band and demonstrates that seasonal variations significantly influence propagation characteristics.
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
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