OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality

The demand for dual-functional wireless systems is on the rise as certain resources become more congested and scarce. Joint communication-radar (JCR) is a promising technology that is becoming very critical and growing in popularity, where communication and radar applications are serviced simultaneo...

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Main Authors: Mehmet Mert Şahin, Ilter Erol Gurol, Emre Arslan, Ertugrul Basar, Huseyin Arslan
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-08-01
Series:Frontiers in Communications and Networks
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/frcmn.2021.715944/full
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spelling doaj-647c0e79a4de40feacfd66541605027e2021-08-26T15:28:57ZengFrontiers Media S.A.Frontiers in Communications and Networks2673-530X2021-08-01210.3389/frcmn.2021.715944715944OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual FunctionalityMehmet Mert Şahin0Ilter Erol Gurol1Emre Arslan2Ertugrul Basar3Huseyin Arslan4Huseyin Arslan5Department of Electrical Engineering, University of South Florida, Tampa, FL, United StatesCoreLab, Department of Electrical and Electronics Engineering, Koç University, Istanbul, TurkeyCoreLab, Department of Electrical and Electronics Engineering, Koç University, Istanbul, TurkeyCoreLab, Department of Electrical and Electronics Engineering, Koç University, Istanbul, TurkeyDepartment of Electrical Engineering, University of South Florida, Tampa, FL, United StatesDepartment of Electrical and Electronics Engineering, Istanbul Medipol University, Istanbul, TurkeyThe demand for dual-functional wireless systems is on the rise as certain resources become more congested and scarce. Joint communication-radar (JCR) is a promising technology that is becoming very critical and growing in popularity, where communication and radar applications are serviced simultaneously sharing the same hardware/software and the frequency band resources. JCR and its alternatives need to be cleverly integrated into certain waveforms such as orthogonal frequency division multiplexing (OFDM) to function properly without degradation in the performance. With the aid of the promising concepts of index modulation (IM) and Golay complementary sequences, a novel JCR waveform is proposed to serve both communication and radar applications with the same resources. It has been shown by extensive computer simulations that the proposed OFDM with an index modulation (OFDM-IM) waveform outperforms the classical OFDM with fixed pilot design both in bit error rate (BER) performance and radar-based applications by introducing diversity among subcarriers and frequency agility over the whole frequency band.https://www.frontiersin.org/articles/10.3389/frcmn.2021.715944/fullOFDM-IMjoint communication and radarGolay complementary sequencedual function radar communicationchannel estimationwaveform design
collection DOAJ
language English
format Article
sources DOAJ
author Mehmet Mert Şahin
Ilter Erol Gurol
Emre Arslan
Ertugrul Basar
Huseyin Arslan
Huseyin Arslan
spellingShingle Mehmet Mert Şahin
Ilter Erol Gurol
Emre Arslan
Ertugrul Basar
Huseyin Arslan
Huseyin Arslan
OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
Frontiers in Communications and Networks
OFDM-IM
joint communication and radar
Golay complementary sequence
dual function radar communication
channel estimation
waveform design
author_facet Mehmet Mert Şahin
Ilter Erol Gurol
Emre Arslan
Ertugrul Basar
Huseyin Arslan
Huseyin Arslan
author_sort Mehmet Mert Şahin
title OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
title_short OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
title_full OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
title_fullStr OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
title_full_unstemmed OFDM-IM for Joint Communication and Radar-Sensing: A Promising Waveform for Dual Functionality
title_sort ofdm-im for joint communication and radar-sensing: a promising waveform for dual functionality
publisher Frontiers Media S.A.
series Frontiers in Communications and Networks
issn 2673-530X
publishDate 2021-08-01
description The demand for dual-functional wireless systems is on the rise as certain resources become more congested and scarce. Joint communication-radar (JCR) is a promising technology that is becoming very critical and growing in popularity, where communication and radar applications are serviced simultaneously sharing the same hardware/software and the frequency band resources. JCR and its alternatives need to be cleverly integrated into certain waveforms such as orthogonal frequency division multiplexing (OFDM) to function properly without degradation in the performance. With the aid of the promising concepts of index modulation (IM) and Golay complementary sequences, a novel JCR waveform is proposed to serve both communication and radar applications with the same resources. It has been shown by extensive computer simulations that the proposed OFDM with an index modulation (OFDM-IM) waveform outperforms the classical OFDM with fixed pilot design both in bit error rate (BER) performance and radar-based applications by introducing diversity among subcarriers and frequency agility over the whole frequency band.
topic OFDM-IM
joint communication and radar
Golay complementary sequence
dual function radar communication
channel estimation
waveform design
url https://www.frontiersin.org/articles/10.3389/frcmn.2021.715944/full
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