Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication

Based on the principle of high frequency radio propagation, the signal reception mechanism of sky wave communication over oceans is investigated. Due to long distance signal transmission, the energy loss is inevitable, especially in the space and on the sea surface. Firstly, we establish the space p...

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Main Authors: Ren Huantao, Xie Qiangjun, Chai Jiajing, Xue Yi
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201823204065
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spelling doaj-d5e865b78f8d493083303ea1cff500d22021-02-02T00:32:49ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012320406510.1051/matecconf/201823204065matecconf_eitce2018_04065Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime CommunicationRen Huantao0Xie Qiangjun1Chai Jiajing2Xue Yi3College of Electronics and Information, Hangzhou Dianzi UniversitySchool of Sciences, Hangzhou Dianzi UniversitySchool of Computer Science and Technology, Hangzhou Dianzi UniversityCollege of Automation, Hangzhou Dianzi UniversityBased on the principle of high frequency radio propagation, the signal reception mechanism of sky wave communication over oceans is investigated. Due to long distance signal transmission, the energy loss is inevitable, especially in the space and on the sea surface. Firstly, we establish the space propagation loss model by the ionospheric absorption, the free space propagation characteristics and other extra loss. Referring to the reflection principle of smooth ground and the Kirchhoff approximation, the energy loss models of the calm sea surface and the turbulent sea surface are obtained respectively. Then, through combining the space propagation loss model and the sea surface propagation loss models, we give out a formula of receiving point field strength. According to the signal to noise ratio, we summarize a complete and concise sky wave maritime communication calculation process, through which multi hops number of the receivable sky wave signal can be calculated accurately. The experimental results show the effectiveness.https://doi.org/10.1051/matecconf/201823204065
collection DOAJ
language English
format Article
sources DOAJ
author Ren Huantao
Xie Qiangjun
Chai Jiajing
Xue Yi
spellingShingle Ren Huantao
Xie Qiangjun
Chai Jiajing
Xue Yi
Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
MATEC Web of Conferences
author_facet Ren Huantao
Xie Qiangjun
Chai Jiajing
Xue Yi
author_sort Ren Huantao
title Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
title_short Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
title_full Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
title_fullStr Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
title_full_unstemmed Analysis of Signal Reception Mechanism of Sky Wave Long-distance Maritime Communication
title_sort analysis of signal reception mechanism of sky wave long-distance maritime communication
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Based on the principle of high frequency radio propagation, the signal reception mechanism of sky wave communication over oceans is investigated. Due to long distance signal transmission, the energy loss is inevitable, especially in the space and on the sea surface. Firstly, we establish the space propagation loss model by the ionospheric absorption, the free space propagation characteristics and other extra loss. Referring to the reflection principle of smooth ground and the Kirchhoff approximation, the energy loss models of the calm sea surface and the turbulent sea surface are obtained respectively. Then, through combining the space propagation loss model and the sea surface propagation loss models, we give out a formula of receiving point field strength. According to the signal to noise ratio, we summarize a complete and concise sky wave maritime communication calculation process, through which multi hops number of the receivable sky wave signal can be calculated accurately. The experimental results show the effectiveness.
url https://doi.org/10.1051/matecconf/201823204065
work_keys_str_mv AT renhuantao analysisofsignalreceptionmechanismofskywavelongdistancemaritimecommunication
AT xieqiangjun analysisofsignalreceptionmechanismofskywavelongdistancemaritimecommunication
AT chaijiajing analysisofsignalreceptionmechanismofskywavelongdistancemaritimecommunication
AT xueyi analysisofsignalreceptionmechanismofskywavelongdistancemaritimecommunication
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