Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication

Orthogonal frequency division multiplexing (OFDM) provides an effective approach to combat multipath with high bandwidth efficiency for underwater acoustic communication, thus design and implementation of acoustic OFDM MODEMs draw more and more attention. Extensive work has been performed to mitigat...

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Main Authors: Yuehai Zhou, Feng Tong
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8809753/
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spelling doaj-095b1cb68f6e4bf7a986b5232fd595782021-03-29T23:18:33ZengIEEEIEEE Access2169-35362019-01-01712356912358210.1109/ACCESS.2019.29369338809753Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic CommunicationYuehai Zhou0Feng Tong1https://orcid.org/0000-0002-4959-2743Key Laboratory of Underwater Acoustic Communication and Marine Information Technology of the Ministry of Education, Xiamen University, Xiamen, ChinaKey Laboratory of Underwater Acoustic Communication and Marine Information Technology of the Ministry of Education, Xiamen University, Xiamen, ChinaOrthogonal frequency division multiplexing (OFDM) provides an effective approach to combat multipath with high bandwidth efficiency for underwater acoustic communication, thus design and implementation of acoustic OFDM MODEMs draw more and more attention. Extensive work has been performed to mitigate multipath, Doppler shift, and peak average power ratio from the viewpoint of theoretical analysis. Meanwhile, design and implementation of a parameter-configurable OFDM to adapt to highly diverse underwater channels and various missions become more and more important. Traditional MODEM with fixed parameters cannot achieve the best tradeoff between data rate and bit error rate. In order to obtain the best communication performance under long time delay channels, Doppler channels, and frequency-selective channels, in this paper, we provide the design and implementation of a parameter-configurable underwater acoustic OFDM MODEM with the purpose to achieve flexibility. Specifically, the reconfigurable parameters of the OFDM MODEM include the number of receivers, the number of null subcarriers, the number of pilot subcarriers, as well as the type of channel estimation algorithms. The number of pilot subcarriers and type of channel estimation methods are determined based on channel characteristics, the number of null subcarriers is determined based on the Doppler shift, and the number of the received channels is based on fading channel. Moreover, in this paper, the Doppler estimation performance under different number of null subcarriers, and the channel estimation performance under different number of pilot subcarriers and under different channel estimation algorithms, are analyzed in terms of bit error rate. Finally, the effectiveness of the proposed highly configurable OFDM MODEM is demonstrated by two sea trials corresponding to different communication scenarios.https://ieeexplore.ieee.org/document/8809753/Shallow water acoustic communicationunderwater acoustic OFDM MODEMhardware and software designparameter-configurable MODEM
collection DOAJ
language English
format Article
sources DOAJ
author Yuehai Zhou
Feng Tong
spellingShingle Yuehai Zhou
Feng Tong
Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
IEEE Access
Shallow water acoustic communication
underwater acoustic OFDM MODEM
hardware and software design
parameter-configurable MODEM
author_facet Yuehai Zhou
Feng Tong
author_sort Yuehai Zhou
title Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
title_short Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
title_full Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
title_fullStr Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
title_full_unstemmed Research and Development of a Highly Reconfigurable OFDM MODEM for Shallow Water Acoustic Communication
title_sort research and development of a highly reconfigurable ofdm modem for shallow water acoustic communication
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Orthogonal frequency division multiplexing (OFDM) provides an effective approach to combat multipath with high bandwidth efficiency for underwater acoustic communication, thus design and implementation of acoustic OFDM MODEMs draw more and more attention. Extensive work has been performed to mitigate multipath, Doppler shift, and peak average power ratio from the viewpoint of theoretical analysis. Meanwhile, design and implementation of a parameter-configurable OFDM to adapt to highly diverse underwater channels and various missions become more and more important. Traditional MODEM with fixed parameters cannot achieve the best tradeoff between data rate and bit error rate. In order to obtain the best communication performance under long time delay channels, Doppler channels, and frequency-selective channels, in this paper, we provide the design and implementation of a parameter-configurable underwater acoustic OFDM MODEM with the purpose to achieve flexibility. Specifically, the reconfigurable parameters of the OFDM MODEM include the number of receivers, the number of null subcarriers, the number of pilot subcarriers, as well as the type of channel estimation algorithms. The number of pilot subcarriers and type of channel estimation methods are determined based on channel characteristics, the number of null subcarriers is determined based on the Doppler shift, and the number of the received channels is based on fading channel. Moreover, in this paper, the Doppler estimation performance under different number of null subcarriers, and the channel estimation performance under different number of pilot subcarriers and under different channel estimation algorithms, are analyzed in terms of bit error rate. Finally, the effectiveness of the proposed highly configurable OFDM MODEM is demonstrated by two sea trials corresponding to different communication scenarios.
topic Shallow water acoustic communication
underwater acoustic OFDM MODEM
hardware and software design
parameter-configurable MODEM
url https://ieeexplore.ieee.org/document/8809753/
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AT fengtong researchanddevelopmentofahighlyreconfigurableofdmmodemforshallowwateracousticcommunication
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