Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods

In order to perform highly qualified neutron-gamma discrimination in mixed radiation field, we investigate the application of blind source separation methods based on nonnegative matrix and tensor factorization algorithms as new and robust neutron-gamma discrimination software-based approaches. Thes...

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Main Authors: Hanane Arahmane, El-Mehdi Hamzaoui, Rajaa Cherkaoui El Moursli
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Journal of Spectroscopy
Online Access:http://dx.doi.org/10.1155/2019/8360395
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author Hanane Arahmane
El-Mehdi Hamzaoui
Rajaa Cherkaoui El Moursli
author_facet Hanane Arahmane
El-Mehdi Hamzaoui
Rajaa Cherkaoui El Moursli
author_sort Hanane Arahmane
collection DOAJ
description In order to perform highly qualified neutron-gamma discrimination in mixed radiation field, we investigate the application of blind source separation methods based on nonnegative matrix and tensor factorization algorithms as new and robust neutron-gamma discrimination software-based approaches. These signal processing tools have allowed to recover original source components from real-world mixture signals which have been recorded at the output of the stilbene scintillation detector. The computation of the performance index of separability of each tested nonnegative algorithm has allowed to select Second-Order NMF algorithm and NTF-2 model as the most efficient techniques for discriminating neutrons and gammas. Furthermore, the neutron-gamma discrimination is highlighted through the computation of the cross-correlation function. The performance of the blind source separation methods has been quantified through the obtained results that prove a good neutron-gamma separation.
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institution Kabale University
issn 2314-4920
2314-4939
language English
publishDate 2019-01-01
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series Journal of Spectroscopy
spelling doaj-art-f607b2e939184a02acb9faa99d47b1522025-02-03T05:53:31ZengWileyJournal of Spectroscopy2314-49202314-49392019-01-01201910.1155/2019/83603958360395Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization MethodsHanane Arahmane0El-Mehdi Hamzaoui1Rajaa Cherkaoui El Moursli2ESMAR Laboratory, Mohammed V University in Rabat, Faculty of Sciences, Rabat, MoroccoNational Centre for Nuclear Energy, Science and Technology (CNESTEN), Rabat, MoroccoESMAR Laboratory, Mohammed V University in Rabat, Faculty of Sciences, Rabat, MoroccoIn order to perform highly qualified neutron-gamma discrimination in mixed radiation field, we investigate the application of blind source separation methods based on nonnegative matrix and tensor factorization algorithms as new and robust neutron-gamma discrimination software-based approaches. These signal processing tools have allowed to recover original source components from real-world mixture signals which have been recorded at the output of the stilbene scintillation detector. The computation of the performance index of separability of each tested nonnegative algorithm has allowed to select Second-Order NMF algorithm and NTF-2 model as the most efficient techniques for discriminating neutrons and gammas. Furthermore, the neutron-gamma discrimination is highlighted through the computation of the cross-correlation function. The performance of the blind source separation methods has been quantified through the obtained results that prove a good neutron-gamma separation.http://dx.doi.org/10.1155/2019/8360395
spellingShingle Hanane Arahmane
El-Mehdi Hamzaoui
Rajaa Cherkaoui El Moursli
Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
Journal of Spectroscopy
title Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
title_full Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
title_fullStr Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
title_full_unstemmed Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
title_short Improving Neutron-Gamma Discrimination with Stilbene Organic Scintillation Detector Using Blind Nonnegative Matrix and Tensor Factorization Methods
title_sort improving neutron gamma discrimination with stilbene organic scintillation detector using blind nonnegative matrix and tensor factorization methods
url http://dx.doi.org/10.1155/2019/8360395
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AT elmehdihamzaoui improvingneutrongammadiscriminationwithstilbeneorganicscintillationdetectorusingblindnonnegativematrixandtensorfactorizationmethods
AT rajaacherkaouielmoursli improvingneutrongammadiscriminationwithstilbeneorganicscintillationdetectorusingblindnonnegativematrixandtensorfactorizationmethods