Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization

Detection of sea-surface small floating targets in maritime high-resolution surveillance radar has been an active area of research in recent years. In this paper, we propose a new detector based on a complex-valued independent component analysis (cICA) algorithm proposed by Geng-Shen Fu et al. calle...

Full description

Bibliographic Details
Main Authors: Hamzeh Ghahramani, Naser Parhizgar, Bijan Abbasi Arand, Morteza Barari
Format: Article
Language:English
Published: Elsevier 2020-10-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844020319812
id doaj-a5f2395d8e19460c828d5ced7e250430
record_format Article
spelling doaj-a5f2395d8e19460c828d5ced7e2504302020-11-25T04:07:50ZengElsevierHeliyon2405-84402020-10-01610e05138Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound MinimizationHamzeh Ghahramani0Naser Parhizgar1Bijan Abbasi Arand2Morteza Barari3Department of Electrical Engineering, Islamic Azad University, Shiraz Branch, Shiraz, IranDepartment of Electrical Engineering, Islamic Azad University, Shiraz Branch, Shiraz, Iran; Corresponding author.Department of Electrical and Engineering, Tarbiat Modarres University, Tehran, IranMinistry of Communication and Information Technology, ICT Research Institute, Tehran, IranDetection of sea-surface small floating targets in maritime high-resolution surveillance radar has been an active area of research in recent years. In this paper, we propose a new detector based on a complex-valued independent component analysis (cICA) algorithm proposed by Geng-Shen Fu et al. called complex entropy rate bound minimization (CERBM), to look for targets in polarimetric radars. It uses received time series at cell under test (CUT) with different polarizations as distinct mixtures. The proposed detector can exploit all information of polarimetric radar for an accurate detection. It does separation on the mixtures using CERBM which results in two output sources, i.e. clutter and target. Finally, the target is detected using estimation of the parameters of K-distribution for outputted sources. Our experiments on the recognized IPIX radar database show that the proposed detector obtains better detection performance in comparison to the newly proposed detectors. The robustness of the detector is also investigated by experiment in either low and high sea state which shows its appropriate results.http://www.sciencedirect.com/science/article/pii/S2405844020319812Electrical engineeringElectrical system planningSignal processingNonlinear signal processingCommunication systemComplex-valued independent component analysis (cICA)
collection DOAJ
language English
format Article
sources DOAJ
author Hamzeh Ghahramani
Naser Parhizgar
Bijan Abbasi Arand
Morteza Barari
spellingShingle Hamzeh Ghahramani
Naser Parhizgar
Bijan Abbasi Arand
Morteza Barari
Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
Heliyon
Electrical engineering
Electrical system planning
Signal processing
Nonlinear signal processing
Communication system
Complex-valued independent component analysis (cICA)
author_facet Hamzeh Ghahramani
Naser Parhizgar
Bijan Abbasi Arand
Morteza Barari
author_sort Hamzeh Ghahramani
title Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
title_short Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
title_full Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
title_fullStr Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
title_full_unstemmed Polarimetric detection of maritime floating small target based on the Complex-valued Entropy Rate Bound Minimization
title_sort polarimetric detection of maritime floating small target based on the complex-valued entropy rate bound minimization
publisher Elsevier
series Heliyon
issn 2405-8440
publishDate 2020-10-01
description Detection of sea-surface small floating targets in maritime high-resolution surveillance radar has been an active area of research in recent years. In this paper, we propose a new detector based on a complex-valued independent component analysis (cICA) algorithm proposed by Geng-Shen Fu et al. called complex entropy rate bound minimization (CERBM), to look for targets in polarimetric radars. It uses received time series at cell under test (CUT) with different polarizations as distinct mixtures. The proposed detector can exploit all information of polarimetric radar for an accurate detection. It does separation on the mixtures using CERBM which results in two output sources, i.e. clutter and target. Finally, the target is detected using estimation of the parameters of K-distribution for outputted sources. Our experiments on the recognized IPIX radar database show that the proposed detector obtains better detection performance in comparison to the newly proposed detectors. The robustness of the detector is also investigated by experiment in either low and high sea state which shows its appropriate results.
topic Electrical engineering
Electrical system planning
Signal processing
Nonlinear signal processing
Communication system
Complex-valued independent component analysis (cICA)
url http://www.sciencedirect.com/science/article/pii/S2405844020319812
work_keys_str_mv AT hamzehghahramani polarimetricdetectionofmaritimefloatingsmalltargetbasedonthecomplexvaluedentropyrateboundminimization
AT naserparhizgar polarimetricdetectionofmaritimefloatingsmalltargetbasedonthecomplexvaluedentropyrateboundminimization
AT bijanabbasiarand polarimetricdetectionofmaritimefloatingsmalltargetbasedonthecomplexvaluedentropyrateboundminimization
AT mortezabarari polarimetricdetectionofmaritimefloatingsmalltargetbasedonthecomplexvaluedentropyrateboundminimization
_version_ 1724427756258721792