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Numerical Solutions of Hybrid Fuzzy Differential Equations in a Hilbert Space

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2020

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Elsevier

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Abstract

The main goal of this work is to study a numerical method for certain hybrid fuzzy differential equations with an application of a reproducing kernel Hilbert space technique for fuzzy differential equations. Meanwhile, we construct a system of orthogonal functions of the space W-2(2)[a, b] circle plus W-2(2)[a, b] depending on a Gram-Schmidt orthogonalization process to get approximate-analytical solutions of a hybrid fuzzy differential equation. A proof of convergence of this method is also discussed in detail. The exact as well as the approximate solutions are displayed by a series in terms of their alpha-cut representation form in the Hilbert space W-2(2)[a, b] circle plus W-2(2)[a, b]. To demonstrate behavior, efficiency, and appropriateness of the present technique, two different numerical experiments are solved numerically in this paper. (C) 2020 IMACS. Published by Elsevier B.V. All rights reserved.

Description

Naser, Mohammad Fuad Mohammad/0000-0001-6905-6510; Al-Smadi, Mohammed/0000-0003-0226-7254; Al-Omari, Shrideh/0000-0001-8955-5552

Keywords

Hybrid Fuzzy Differential Equation, Fuzzy Derivative, Gram-Schmidt Process, Reproducing Kernel Function, Hilbert Space

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Citation

Gumah, G...et al. (2020). "Numerical solutions of hybrid fuzzy differential equations in a Hilbert space", Applied Numerical Mathematics, Vol. 151, pp. 402-412.

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Q1

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38

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151

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402

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412
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CrossRef : 46

Scopus : 48

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Mendeley Readers : 12

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