Assessment of multi-target distinguishing using deconvolved conventional beamforming

Multi-target distinguishing based on beamforming is a popular topic in array signal processing. Conventional beamforming as a frequently used method is robust but constrained by the Rayleigh limit. Deconvolved conventional beamforming is a better choice since point scattering function could be deriv...

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Main Authors: Lan Hualin, Zhang Xueqi, Li Ruonan, Jin Suyu, Li Na
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/32/matecconf_fcac2019_04005.pdf
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spelling doaj-6de9fbb35ee54df39e443b65c6ff3c1b2021-03-02T09:21:01ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012830400510.1051/matecconf/201928304005matecconf_fcac2019_04005Assessment of multi-target distinguishing using deconvolved conventional beamformingLan HualinZhang XueqiLi RuonanJin SuyuLi NaMulti-target distinguishing based on beamforming is a popular topic in array signal processing. Conventional beamforming as a frequently used method is robust but constrained by the Rayleigh limit. Deconvolved conventional beamforming is a better choice since point scattering function could be derived by deconvolution based on Lucy-Richardson, with narrower beam width and lower sidelobe levels. Besides, the robustness of the conventional beamforming is maintained. In this paper, a new method of combined deconvolved conventional beamforming with Dolph-Chebyshev weights is proposed. The proposed method could overcome the deficit of deconvolved conventional beamforming on low mainlobe of weak target caused by iteration. Firstly, principles of the method are given including conventional beamforming, deconvolved conventional beamforming and the proposed algorithm combined deconvolved conventional beamforming with Dolph-Chebyshev weights. Then, performance of the proposed method for bi-target signals with the equivalent strength, in terms of the effect of signal frequency on distinguishing performance of two closed spaced targets coexisted is analysed. For weak target detection existed strong interference, the superiority of the proposed algorithm is analysed. Finally, proposed method is validated with sea trial data of two ship target noise recorded by a 48-element array.https://www.matec-conferences.org/articles/matecconf/pdf/2019/32/matecconf_fcac2019_04005.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Lan Hualin
Zhang Xueqi
Li Ruonan
Jin Suyu
Li Na
spellingShingle Lan Hualin
Zhang Xueqi
Li Ruonan
Jin Suyu
Li Na
Assessment of multi-target distinguishing using deconvolved conventional beamforming
MATEC Web of Conferences
author_facet Lan Hualin
Zhang Xueqi
Li Ruonan
Jin Suyu
Li Na
author_sort Lan Hualin
title Assessment of multi-target distinguishing using deconvolved conventional beamforming
title_short Assessment of multi-target distinguishing using deconvolved conventional beamforming
title_full Assessment of multi-target distinguishing using deconvolved conventional beamforming
title_fullStr Assessment of multi-target distinguishing using deconvolved conventional beamforming
title_full_unstemmed Assessment of multi-target distinguishing using deconvolved conventional beamforming
title_sort assessment of multi-target distinguishing using deconvolved conventional beamforming
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description Multi-target distinguishing based on beamforming is a popular topic in array signal processing. Conventional beamforming as a frequently used method is robust but constrained by the Rayleigh limit. Deconvolved conventional beamforming is a better choice since point scattering function could be derived by deconvolution based on Lucy-Richardson, with narrower beam width and lower sidelobe levels. Besides, the robustness of the conventional beamforming is maintained. In this paper, a new method of combined deconvolved conventional beamforming with Dolph-Chebyshev weights is proposed. The proposed method could overcome the deficit of deconvolved conventional beamforming on low mainlobe of weak target caused by iteration. Firstly, principles of the method are given including conventional beamforming, deconvolved conventional beamforming and the proposed algorithm combined deconvolved conventional beamforming with Dolph-Chebyshev weights. Then, performance of the proposed method for bi-target signals with the equivalent strength, in terms of the effect of signal frequency on distinguishing performance of two closed spaced targets coexisted is analysed. For weak target detection existed strong interference, the superiority of the proposed algorithm is analysed. Finally, proposed method is validated with sea trial data of two ship target noise recorded by a 48-element array.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/32/matecconf_fcac2019_04005.pdf
work_keys_str_mv AT lanhualin assessmentofmultitargetdistinguishingusingdeconvolvedconventionalbeamforming
AT zhangxueqi assessmentofmultitargetdistinguishingusingdeconvolvedconventionalbeamforming
AT liruonan assessmentofmultitargetdistinguishingusingdeconvolvedconventionalbeamforming
AT jinsuyu assessmentofmultitargetdistinguishingusingdeconvolvedconventionalbeamforming
AT lina assessmentofmultitargetdistinguishingusingdeconvolvedconventionalbeamforming
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