Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling

Near sea-surface line-of-sight (LoS) radiowave propagation at 5 GHz was investigated through narrowband measurements in this paper. Results of the received signal strength with a transmission distance of up to 10 km were examined against free space loss model and 2-ray path loss model. The experimen...

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Main Authors: Yee Hui Lee, Feng Dong, Yu Song Meng
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2014-09-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2014/14_03_0824_0830.pdf
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spelling doaj-399ac61c7b9a47499d051cdb532be6462020-11-24T22:59:16ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122014-09-01233824830Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and ModelingYee Hui LeeFeng DongYu Song MengNear sea-surface line-of-sight (LoS) radiowave propagation at 5 GHz was investigated through narrowband measurements in this paper. Results of the received signal strength with a transmission distance of up to 10 km were examined against free space loss model and 2-ray path loss model. The experimental results have good agreements with the predicted values using the 2-ray model. However, the prediction ability of 2-ray model becomes poor when the propagation distance increases. Our results and analysis show that an evaporation duct layer exists and therefore, a 3-ray path loss model, taking into consideration both the reflection from sea surface and the refraction caused by evaporation duct could predict well the trend of LoS signal strength variations at relatively large propagation distances in a tropical maritime environment.www.radioeng.cz/fulltexts/2014/14_03_0824_0830.pdfChannel modelingevaporation ductmaritime mobilepath loss predictionsea reflection
collection DOAJ
language English
format Article
sources DOAJ
author Yee Hui Lee
Feng Dong
Yu Song Meng
spellingShingle Yee Hui Lee
Feng Dong
Yu Song Meng
Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
Radioengineering
Channel modeling
evaporation duct
maritime mobile
path loss prediction
sea reflection
author_facet Yee Hui Lee
Feng Dong
Yu Song Meng
author_sort Yee Hui Lee
title Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
title_short Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
title_full Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
title_fullStr Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
title_full_unstemmed Near Sea-Surface Mobile Radiowave Propagation at 5 GHz: Measurements and Modeling
title_sort near sea-surface mobile radiowave propagation at 5 ghz: measurements and modeling
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2014-09-01
description Near sea-surface line-of-sight (LoS) radiowave propagation at 5 GHz was investigated through narrowband measurements in this paper. Results of the received signal strength with a transmission distance of up to 10 km were examined against free space loss model and 2-ray path loss model. The experimental results have good agreements with the predicted values using the 2-ray model. However, the prediction ability of 2-ray model becomes poor when the propagation distance increases. Our results and analysis show that an evaporation duct layer exists and therefore, a 3-ray path loss model, taking into consideration both the reflection from sea surface and the refraction caused by evaporation duct could predict well the trend of LoS signal strength variations at relatively large propagation distances in a tropical maritime environment.
topic Channel modeling
evaporation duct
maritime mobile
path loss prediction
sea reflection
url http://www.radioeng.cz/fulltexts/2014/14_03_0824_0830.pdf
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AT fengdong nearseasurfacemobileradiowavepropagationat5ghzmeasurementsandmodeling
AT yusongmeng nearseasurfacemobileradiowavepropagationat5ghzmeasurementsandmodeling
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