Back-propagation algorithm with variable adaptive momentum

•Back-propagation neural network (BPNN).•Variable Adaptive Momentum.•Supervised Learning Algorithms.•Deep Learning. In this paper, we propose a novel machine learning classifier by deriving a new adaptive momentum back-propagation (BP) artificial neural networks algorithm. The proposed algorithm is...

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Veröffentlicht in:Knowledge-based systems Jg. 114; S. 79 - 87
Hauptverfasser: Hameed, Alaa Ali, Karlik, Bekir, Salman, Mohammad Shukri
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Elsevier B.V 15.12.2016
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ISSN:0950-7051, 1872-7409
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Abstract •Back-propagation neural network (BPNN).•Variable Adaptive Momentum.•Supervised Learning Algorithms.•Deep Learning. In this paper, we propose a novel machine learning classifier by deriving a new adaptive momentum back-propagation (BP) artificial neural networks algorithm. The proposed algorithm is a modified version of the BP algorithm to improve its convergence behavior in both sides, accelerate the convergence process for accessing the optimum steady-state and minimizing the error misadjustment to improve the recognized patterns superiorly. This algorithm is controlled by the learning rate parameter which is dependent on the eigenvalues of the autocorrelation matrix of the input. It provides low error performance for the weights update. To discuss the performance measures of this proposed algorithm and the other supervised learning algorithms such as k-nearest neighbours (k-NN), Naive Bayes (NB), linear discriminant analysis (LDA), support vector machines (SVM), BP, and BP with adaptive momentum (PBPAM) have been compared in term of speed of convergence, Sum of Squared Error (SSE), and accuracy by implementing benchmark problem - XOR and seven datasets from UCI repository.
AbstractList •Back-propagation neural network (BPNN).•Variable Adaptive Momentum.•Supervised Learning Algorithms.•Deep Learning. In this paper, we propose a novel machine learning classifier by deriving a new adaptive momentum back-propagation (BP) artificial neural networks algorithm. The proposed algorithm is a modified version of the BP algorithm to improve its convergence behavior in both sides, accelerate the convergence process for accessing the optimum steady-state and minimizing the error misadjustment to improve the recognized patterns superiorly. This algorithm is controlled by the learning rate parameter which is dependent on the eigenvalues of the autocorrelation matrix of the input. It provides low error performance for the weights update. To discuss the performance measures of this proposed algorithm and the other supervised learning algorithms such as k-nearest neighbours (k-NN), Naive Bayes (NB), linear discriminant analysis (LDA), support vector machines (SVM), BP, and BP with adaptive momentum (PBPAM) have been compared in term of speed of convergence, Sum of Squared Error (SSE), and accuracy by implementing benchmark problem - XOR and seven datasets from UCI repository.
Author Hameed, Alaa Ali
Salman, Mohammad Shukri
Karlik, Bekir
Author_xml – sequence: 1
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  orcidid: 0000-0002-8514-9255
  surname: Hameed
  fullname: Hameed, Alaa Ali
  email: alaa.hameed@selcuk.edu.tr
  organization: Department of Computer Engineering, Selcuk University, Konya, Turkey
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  givenname: Bekir
  orcidid: 0000-0002-9112-2964
  surname: Karlik
  fullname: Karlik, Bekir
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  organization: Department of Biomedical Engineering, Beykent University, Istanbul, Turkey
– sequence: 3
  givenname: Mohammad Shukri
  surname: Salman
  fullname: Salman, Mohammad Shukri
  email: mohammad.salman@aum.edu.kw
  organization: Department of Electrical Engineering, American University of the Middle East, Kuwait
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Keywords Neural network
Supervised learning
Back-propagation
Adaptive momentum
Language English
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Snippet •Back-propagation neural network (BPNN).•Variable Adaptive Momentum.•Supervised Learning Algorithms.•Deep Learning. In this paper, we propose a novel machine...
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SubjectTerms Adaptive momentum
Back-propagation
Neural network
Supervised learning
Title Back-propagation algorithm with variable adaptive momentum
URI https://dx.doi.org/10.1016/j.knosys.2016.10.001
Volume 114
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