FMNEICS: fractional Meyer neuro-evolution-based intelligent computing solver for doubly singular multi-fractional order Lane–Emden system

In the present study, a novel fractional Meyer neuro-evolution-based intelligent computing solver (FMNEICS) is presented for numerical treatment of doubly singular multi-fractional Lane–Emden system (DSMF-LES) using combined heuristics of Meyer wavelet neural networks (MWNN) optimized with global se...

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Published inComputational & applied mathematics Vol. 39; no. 4
Main Authors Sabir, Zulqurnain, Raja, Muhammad Asif Zahoor, Shoaib, Muhammad, Aguilar, J. F. Gómez
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.12.2020
Springer Nature B.V
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Abstract In the present study, a novel fractional Meyer neuro-evolution-based intelligent computing solver (FMNEICS) is presented for numerical treatment of doubly singular multi-fractional Lane–Emden system (DSMF-LES) using combined heuristics of Meyer wavelet neural networks (MWNN) optimized with global search efficacy of genetic algorithms (GAs) and sequential quadratic programming (SQP), i.e., MWNN-GASQP. The design of novel FMNEICS for DSMF-LES is presented after derivation from standard Lane–Emden equation, and the singular points and shape factors along with fractional-order terms are analyzed. The MWNN modeling strength is used to represent the system model DSMF-LES in the mean-squared error-based merit function and optimization of the networks is carried out with integrated optimization ability of GASQP. The verification, validation, and perfection of the FMNEICS for three different cases of DSMF-LES are established through comparative studies from reference solutions on convergence, robustness, accuracy, and stability measures. Moreover, the observations through the statistical analysis further authenticate the worth of proposed fractional MWNN-GASQP-based stochastic solver.
AbstractList In the present study, a novel fractional Meyer neuro-evolution-based intelligent computing solver (FMNEICS) is presented for numerical treatment of doubly singular multi-fractional Lane–Emden system (DSMF-LES) using combined heuristics of Meyer wavelet neural networks (MWNN) optimized with global search efficacy of genetic algorithms (GAs) and sequential quadratic programming (SQP), i.e., MWNN-GASQP. The design of novel FMNEICS for DSMF-LES is presented after derivation from standard Lane–Emden equation, and the singular points and shape factors along with fractional-order terms are analyzed. The MWNN modeling strength is used to represent the system model DSMF-LES in the mean-squared error-based merit function and optimization of the networks is carried out with integrated optimization ability of GASQP. The verification, validation, and perfection of the FMNEICS for three different cases of DSMF-LES are established through comparative studies from reference solutions on convergence, robustness, accuracy, and stability measures. Moreover, the observations through the statistical analysis further authenticate the worth of proposed fractional MWNN-GASQP-based stochastic solver.
ArticleNumber 303
Author Sabir, Zulqurnain
Raja, Muhammad Asif Zahoor
Shoaib, Muhammad
Aguilar, J. F. Gómez
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  surname: Sabir
  fullname: Sabir, Zulqurnain
  organization: Department of Mathematics and Statistics, Hazara University
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  givenname: Muhammad Asif Zahoor
  surname: Raja
  fullname: Raja, Muhammad Asif Zahoor
  organization: Future Technology Research Center, National Yunlin University of Science and Technology, Department of Electrical and Computer Engineering, COMSATS University Islamabad
– sequence: 3
  givenname: Muhammad
  surname: Shoaib
  fullname: Shoaib, Muhammad
  organization: Department of Mathematics, COMSATS University Islamabad
– sequence: 4
  givenname: J. F. Gómez
  orcidid: 0000-0001-9403-3767
  surname: Aguilar
  fullname: Aguilar, J. F. Gómez
  email: jose.ga@cenidet.tecnm.mx
  organization: CONACyT-Tecnológico Nacional de México/CENIDET. Interior Internado Palmira S/N
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Multi-singular systems
Artificial neural networks
Meyer wavelet neural networks
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Multi-fractional Lane–Emden model
Genetic algorithms
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Snippet In the present study, a novel fractional Meyer neuro-evolution-based intelligent computing solver (FMNEICS) is presented for numerical treatment of doubly...
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SubjectTerms Applications of Mathematics
Applied physics
Comparative studies
Computation
Computational mathematics
Computational Mathematics and Numerical Analysis
Evolution
Genetic algorithms
Mathematical Applications in Computer Science
Mathematical Applications in the Physical Sciences
Mathematics
Mathematics and Statistics
Neural networks
Optimization
Quadratic programming
Robustness (mathematics)
Solvers
Stability analysis
Statistical analysis
Title FMNEICS: fractional Meyer neuro-evolution-based intelligent computing solver for doubly singular multi-fractional order Lane–Emden system
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Volume 39
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