Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side

To increase the transmission speed in wireless data transmission systems, it is necessary to change either the bandwidth or the spectral efficiency, or both simultaneously. Systems based on Multi-Input Multi-Output (MIMO) methods can significantly increase spectral efficiency through parall...

Full description

Bibliographic Details
Main Authors: Fedosov Valentin, Legin Andrey
Format: Article
Language:English
Published: Faculty of Technical Sciences in Cacak 2019-01-01
Series:Serbian Journal of Electrical Engineering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-4869/2019/1451-48691901071F.pdf
id doaj-4f729b9ba5f345dba12c4ad9f2f577b9
record_format Article
spelling doaj-4f729b9ba5f345dba12c4ad9f2f577b92020-11-25T01:13:05ZengFaculty of Technical Sciences in CacakSerbian Journal of Electrical Engineering1451-48692217-71832019-01-01161718310.2298/SJEE1901071F1451-48691901071FWireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver sideFedosov Valentin0Legin Andrey1South Federal University, Taganrog, Rostov reg., RussiaSouth Federal University, Taganrog, Rostov reg., RussiaTo increase the transmission speed in wireless data transmission systems, it is necessary to change either the bandwidth or the spectral efficiency, or both simultaneously. Systems based on Multi-Input Multi-Output (MIMO) methods can significantly increase spectral efficiency through parallel transmission using several transmitters and receivers. Such systems are particularly attractive for use in underwater acoustic communications systems, which are normally bandwidth-reduced. MIMO system along with OFDM (Orthogonal Frequency-Division Multiplexing) is a popular technology used in wireless networks to provide a high data transfer rate and resistance to multipath and fading of the channel. The implementation of such a system requires being aware of the channel condition at the receiver, and can be provided by means of using channel parameter estimation schemes. The adaptation task on the receiving side, apart from peak of pattern formation in the direction of the signal expected, also includes the interference-source suppression, that is, the issue of implementing spatial filtering of interference from other directions. However, since the signal and noise direction of arrival are unknown, we get a system with adaptive antenna array (AA). In the proposed research, a phase antenna array was used with controlled weighing.http://www.doiserbia.nb.rs/img/doi/1451-4869/2019/1451-48691901071F.pdfAntenna array (AA)MIMOOFDMMultipathAdaptive algorithmHydroacoustic channel
collection DOAJ
language English
format Article
sources DOAJ
author Fedosov Valentin
Legin Andrey
spellingShingle Fedosov Valentin
Legin Andrey
Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
Serbian Journal of Electrical Engineering
Antenna array (AA)
MIMO
OFDM
Multipath
Adaptive algorithm
Hydroacoustic channel
author_facet Fedosov Valentin
Legin Andrey
author_sort Fedosov Valentin
title Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
title_short Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
title_full Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
title_fullStr Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
title_full_unstemmed Wireless data transmission in underwater hydroacoustic environment based on MIMO-OFDM system and application adaptive algorithm at the receiver side
title_sort wireless data transmission in underwater hydroacoustic environment based on mimo-ofdm system and application adaptive algorithm at the receiver side
publisher Faculty of Technical Sciences in Cacak
series Serbian Journal of Electrical Engineering
issn 1451-4869
2217-7183
publishDate 2019-01-01
description To increase the transmission speed in wireless data transmission systems, it is necessary to change either the bandwidth or the spectral efficiency, or both simultaneously. Systems based on Multi-Input Multi-Output (MIMO) methods can significantly increase spectral efficiency through parallel transmission using several transmitters and receivers. Such systems are particularly attractive for use in underwater acoustic communications systems, which are normally bandwidth-reduced. MIMO system along with OFDM (Orthogonal Frequency-Division Multiplexing) is a popular technology used in wireless networks to provide a high data transfer rate and resistance to multipath and fading of the channel. The implementation of such a system requires being aware of the channel condition at the receiver, and can be provided by means of using channel parameter estimation schemes. The adaptation task on the receiving side, apart from peak of pattern formation in the direction of the signal expected, also includes the interference-source suppression, that is, the issue of implementing spatial filtering of interference from other directions. However, since the signal and noise direction of arrival are unknown, we get a system with adaptive antenna array (AA). In the proposed research, a phase antenna array was used with controlled weighing.
topic Antenna array (AA)
MIMO
OFDM
Multipath
Adaptive algorithm
Hydroacoustic channel
url http://www.doiserbia.nb.rs/img/doi/1451-4869/2019/1451-48691901071F.pdf
work_keys_str_mv AT fedosovvalentin wirelessdatatransmissioninunderwaterhydroacousticenvironmentbasedonmimoofdmsystemandapplicationadaptivealgorithmatthereceiverside
AT leginandrey wirelessdatatransmissioninunderwaterhydroacousticenvironmentbasedonmimoofdmsystemandapplicationadaptivealgorithmatthereceiverside
_version_ 1725163340227936256