Analysis and status of the scattering channel model for ultraviolet communications

Due to its unique features such as high local security, low background noise, and non-light-of-sight communication, the ultraviolet communication, which uses the light wave of “solar blind” wavelength (200~280 nm) as the information carrier, becomes a promising optical communication technique for ap...

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Main Authors: Renzhi YUAN, Zhifeng WANG, Mugen PENG
Format: Article
Language:zho
Published: Beijing Xintong Media Co., Ltd 2021-06-01
Series:Dianxin kexue
Subjects:
Online Access:http://www.telecomsci.com/thesisDetails#10.11959/j.issn.1000-0801.2021126
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author Renzhi YUAN
Zhifeng WANG
Mugen PENG
author_facet Renzhi YUAN
Zhifeng WANG
Mugen PENG
author_sort Renzhi YUAN
collection DOAJ
description Due to its unique features such as high local security, low background noise, and non-light-of-sight communication, the ultraviolet communication, which uses the light wave of “solar blind” wavelength (200~280 nm) as the information carrier, becomes a promising optical communication technique for applications in both secure communications and internet of vehicles and so on.The scattering channel models were classified into analytical channel models and stochastic channel models according to their different computational efficiencies.The research of the first three scattering orders in analytical channel models and the Monte-Carlo simulation model and Monte-Carlo integration model in stochastic channel models were mainly focused on.Some future research directions for the scattering channel model of ultraviolet communications were also provided.
format Article
id doaj-art-57f4f19a7a8d46bdb7e186458adc3cbc
institution OA Journals
issn 1000-0801
language zho
publishDate 2021-06-01
publisher Beijing Xintong Media Co., Ltd
record_format Article
series Dianxin kexue
spelling doaj-art-57f4f19a7a8d46bdb7e186458adc3cbc2025-08-20T02:09:21ZzhoBeijing Xintong Media Co., LtdDianxin kexue1000-08012021-06-0137455459808433Analysis and status of the scattering channel model for ultraviolet communicationsRenzhi YUANZhifeng WANGMugen PENGDue to its unique features such as high local security, low background noise, and non-light-of-sight communication, the ultraviolet communication, which uses the light wave of “solar blind” wavelength (200~280 nm) as the information carrier, becomes a promising optical communication technique for applications in both secure communications and internet of vehicles and so on.The scattering channel models were classified into analytical channel models and stochastic channel models according to their different computational efficiencies.The research of the first three scattering orders in analytical channel models and the Monte-Carlo simulation model and Monte-Carlo integration model in stochastic channel models were mainly focused on.Some future research directions for the scattering channel model of ultraviolet communications were also provided.http://www.telecomsci.com/thesisDetails#10.11959/j.issn.1000-0801.2021126ultraviolet communication;scattering channel model;Monte-Carlo integration model
spellingShingle Renzhi YUAN
Zhifeng WANG
Mugen PENG
Analysis and status of the scattering channel model for ultraviolet communications
Dianxin kexue
ultraviolet communication;scattering channel model;Monte-Carlo integration model
title Analysis and status of the scattering channel model for ultraviolet communications
title_full Analysis and status of the scattering channel model for ultraviolet communications
title_fullStr Analysis and status of the scattering channel model for ultraviolet communications
title_full_unstemmed Analysis and status of the scattering channel model for ultraviolet communications
title_short Analysis and status of the scattering channel model for ultraviolet communications
title_sort analysis and status of the scattering channel model for ultraviolet communications
topic ultraviolet communication;scattering channel model;Monte-Carlo integration model
url http://www.telecomsci.com/thesisDetails#10.11959/j.issn.1000-0801.2021126
work_keys_str_mv AT renzhiyuan analysisandstatusofthescatteringchannelmodelforultravioletcommunications
AT zhifengwang analysisandstatusofthescatteringchannelmodelforultravioletcommunications
AT mugenpeng analysisandstatusofthescatteringchannelmodelforultravioletcommunications