Effects of tropospheric turbulence on radio signal data passing atmospheric communication links

IF 1.6 4区 地球科学 Q3 ASTRONOMY & ASTROPHYSICS
Radio Science Pub Date : 2024-11-01 DOI:10.1029/2023RS007895
I. Bronfman;Y. Ben-Shimol;N. Blaunstein
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引用次数: 0

Abstract

This paper analyzes the effects of turbulent structures of different sizes on the structural parameter of the refractive index and, consequently, on the scintillation index of radio waves passing through atmospheric channels with fading. The relationships between these parameters are analyzed and discussed not only for weak turbulence, but also for moderate and strong turbulences occurring in the mid-latitude troposphere. By using the relationship between the scintillation index of signal intensity and the well-known Rician K parameter of fast fading, and by obtaining the relationships between the signal data stream parameters, capacity, spectral efficiency, and bit error rate, and K factor of fast fading, we have numerically analyzed various cases of data transmission over tropospheric communication links with fading. This analysis considers the effects of weak, moderate, and strong turbulence on the quality of data transmission over such communication links. The results of this study can be used to improve the design and performance of tropospheric communication links in the presence of turbulence.
对流层湍流对通过大气通信链路的无线电信号数据的影响
本文分析了不同尺寸的湍流结构对无线电波折射率结构参数的影响,从而对通过有衰落的大气信道的无线电波闪烁指数的影响。分析和讨论了这些参数之间的关系,不仅对弱湍流,而且对发生在中纬度对流层的中等和强湍流。利用信号强度的闪烁指数与著名的快速衰落的fourier K参数之间的关系,通过得到信号数据流参数、容量、频谱效率和误码率与快速衰落K因子之间的关系,对具有衰落的对流层通信链路上的各种数据传输情况进行了数值分析。该分析考虑了弱、中等和强湍流对此类通信链路上数据传输质量的影响。本研究结果可用于改进湍流条件下对流层通信链路的设计和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radio Science
Radio Science 工程技术-地球化学与地球物理
CiteScore
3.30
自引率
12.50%
发文量
112
审稿时长
1 months
期刊介绍: Radio Science (RDS) publishes original scientific contributions on radio-frequency electromagnetic-propagation and its applications. Contributions covering measurement, modelling, prediction and forecasting techniques pertinent to fields and waves - including antennas, signals and systems, the terrestrial and space environment and radio propagation problems in radio astronomy - are welcome. Contributions may address propagation through, interaction with, and remote sensing of structures, geophysical media, plasmas, and materials, as well as the application of radio frequency electromagnetic techniques to remote sensing of the Earth and other bodies in the solar system.
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