Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar

Abstract The linear frequency‐modulated frequency agile radar (FAR) can be used for synthesizing high‐range‐resolution profiles (HRRP), and also has excellent electronic counter‐countermeasures performance. Similar to the Newtonalized orthogonal matching pursuit (NOMP) for line spectral estimation p...

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Autores principales: Jiang Zhu, Honghui Guo, Ning Zhang, Chunyi Song, Zhiwei Xu
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Lenguaje:EN
Publicado: Wiley 2021
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Acceso en línea:https://doaj.org/article/fb67d95d83c0417289527af0f48c9f20
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spelling oai:doaj.org-article:fb67d95d83c0417289527af0f48c9f202021-11-12T15:34:30ZNewtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar1751-87921751-878410.1049/rsn2.12156https://doaj.org/article/fb67d95d83c0417289527af0f48c9f202021-12-01T00:00:00Zhttps://doi.org/10.1049/rsn2.12156https://doaj.org/toc/1751-8784https://doaj.org/toc/1751-8792Abstract The linear frequency‐modulated frequency agile radar (FAR) can be used for synthesizing high‐range‐resolution profiles (HRRP), and also has excellent electronic counter‐countermeasures performance. Similar to the Newtonalized orthogonal matching pursuit (NOMP) for line spectral estimation problem, the NOMP for the FAR radar termed as NOMP‐FAR is designed to process each coarse range bin to extract the HRRP and velocities of multiple targets, including the guide for determining the oversampling factor and the stopping criterion. In addition, it is shown that the target will cause false alarm in the nearby coarse range bins, and a post‐processing algorithm is proposed to suppress the ghost targets. Numerical simulations are conducted to demonstrate the effectiveness of NOMP‐FAR.Jiang ZhuHonghui GuoNing ZhangChunyi SongZhiwei XuWileyarticleTelecommunicationTK5101-6720ENIET Radar, Sonar & Navigation, Vol 15, Iss 12, Pp 1670-1686 (2021)
institution DOAJ
collection DOAJ
language EN
topic Telecommunication
TK5101-6720
spellingShingle Telecommunication
TK5101-6720
Jiang Zhu
Honghui Guo
Ning Zhang
Chunyi Song
Zhiwei Xu
Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
description Abstract The linear frequency‐modulated frequency agile radar (FAR) can be used for synthesizing high‐range‐resolution profiles (HRRP), and also has excellent electronic counter‐countermeasures performance. Similar to the Newtonalized orthogonal matching pursuit (NOMP) for line spectral estimation problem, the NOMP for the FAR radar termed as NOMP‐FAR is designed to process each coarse range bin to extract the HRRP and velocities of multiple targets, including the guide for determining the oversampling factor and the stopping criterion. In addition, it is shown that the target will cause false alarm in the nearby coarse range bins, and a post‐processing algorithm is proposed to suppress the ghost targets. Numerical simulations are conducted to demonstrate the effectiveness of NOMP‐FAR.
format article
author Jiang Zhu
Honghui Guo
Ning Zhang
Chunyi Song
Zhiwei Xu
author_facet Jiang Zhu
Honghui Guo
Ning Zhang
Chunyi Song
Zhiwei Xu
author_sort Jiang Zhu
title Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
title_short Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
title_full Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
title_fullStr Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
title_full_unstemmed Newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
title_sort newtonalized orthogonal matching pursuit for the linear frequency‐modulated pulse frequency agile radar
publisher Wiley
publishDate 2021
url https://doaj.org/article/fb67d95d83c0417289527af0f48c9f20
work_keys_str_mv AT jiangzhu newtonalizedorthogonalmatchingpursuitforthelinearfrequencymodulatedpulsefrequencyagileradar
AT honghuiguo newtonalizedorthogonalmatchingpursuitforthelinearfrequencymodulatedpulsefrequencyagileradar
AT ningzhang newtonalizedorthogonalmatchingpursuitforthelinearfrequencymodulatedpulsefrequencyagileradar
AT chunyisong newtonalizedorthogonalmatchingpursuitforthelinearfrequencymodulatedpulsefrequencyagileradar
AT zhiweixu newtonalizedorthogonalmatchingpursuitforthelinearfrequencymodulatedpulsefrequencyagileradar
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