BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING

The harm that underwater noise pollution poses to aquatic ecosystems and the resources that support it are being acknowledged on a worldwide scale. Fisheries and ecotourism are only two of the important businesses that are impacted by noise pollution. Reducing underwater impact noise is a major cha...

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Main Authors: Thamer Easa Murad, Yasin Al-Aboosi
Format: Article
Language:Arabic
Published: Mustansiriyah University/College of Engineering 2023-09-01
Series:Journal of Engineering and Sustainable Development
Subjects:
Online Access:https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1946
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author Thamer Easa Murad
Yasin Al-Aboosi
author_facet Thamer Easa Murad
Yasin Al-Aboosi
author_sort Thamer Easa Murad
collection DOAJ
description The harm that underwater noise pollution poses to aquatic ecosystems and the resources that support it are being acknowledged on a worldwide scale. Fisheries and ecotourism are only two of the important businesses that are impacted by noise pollution. Reducing underwater impact noise is a major challenge for underwater acoustic communication systems. However, the implementation of noise reduction measures (noise abatement) remains limited. Most communication systems assume that the noise is both additive and Gaussian. Underwater Acoustic Noise (UWAN) systems generally perform poorly because of the often large non-Gaussian components in intermittent noise in the ocean. This study presents an experimental model (Dolphin-EAR DE200 Series) sound channel noise underwater at Lake Diyala Hamrin, Iraq, using a hydrophone model. Low data volume, multipath propagation, low bandwidth, and higher bit error rate (BER) of received data are major issues for underwater communication systems. In this paper, the Underwater Acoustic Channel (UWAC) aspect is evaluated and an error performance term is determined from the noise in the Student's t-distribution. In addition, Signals using binary phase-shift keying (BPSK) and quadrature phase-shift keying (QPSK) are used to generate error power analysis.
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spelling doaj.art-076a5a0ffdeb48dbbfb482d809558ab42023-09-01T05:57:36ZaraMustansiriyah University/College of EngineeringJournal of Engineering and Sustainable Development2520-09172520-09252023-09-0127510.31272/jeasd.27.5.8BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODINGThamer Easa Murad0Yasin Al-Aboosi 1Electrical Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq Electrical Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq The harm that underwater noise pollution poses to aquatic ecosystems and the resources that support it are being acknowledged on a worldwide scale. Fisheries and ecotourism are only two of the important businesses that are impacted by noise pollution. Reducing underwater impact noise is a major challenge for underwater acoustic communication systems. However, the implementation of noise reduction measures (noise abatement) remains limited. Most communication systems assume that the noise is both additive and Gaussian. Underwater Acoustic Noise (UWAN) systems generally perform poorly because of the often large non-Gaussian components in intermittent noise in the ocean. This study presents an experimental model (Dolphin-EAR DE200 Series) sound channel noise underwater at Lake Diyala Hamrin, Iraq, using a hydrophone model. Low data volume, multipath propagation, low bandwidth, and higher bit error rate (BER) of received data are major issues for underwater communication systems. In this paper, the Underwater Acoustic Channel (UWAC) aspect is evaluated and an error performance term is determined from the noise in the Student's t-distribution. In addition, Signals using binary phase-shift keying (BPSK) and quadrature phase-shift keying (QPSK) are used to generate error power analysis. https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1946underwater acoustic channelnon-Gaussian distributionpolar codechannel codingt-distribution
spellingShingle Thamer Easa Murad
Yasin Al-Aboosi
BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
Journal of Engineering and Sustainable Development
underwater acoustic channel
non-Gaussian distribution
polar code
channel coding
t-distribution
title BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
title_full BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
title_fullStr BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
title_full_unstemmed BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
title_short BIT ERROR PERFORMANCE ENHANCEMENT FOR UNDERWATER ACOUSTIC NOISE CHANNEL BY USING CHANNEL CODING
title_sort bit error performance enhancement for underwater acoustic noise channel by using channel coding
topic underwater acoustic channel
non-Gaussian distribution
polar code
channel coding
t-distribution
url https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1946
work_keys_str_mv AT thamereasamurad biterrorperformanceenhancementforunderwateracousticnoisechannelbyusingchannelcoding
AT yasinalaboosi biterrorperformanceenhancementforunderwateracousticnoisechannelbyusingchannelcoding