A Novel Jacobi Operational Matrix for Numerical Solution of Multi-Term Variable-Order Fractional Differential Equations
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Date
2020
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Taylor & Francis Ltd
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
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Publicly Funded
No
Abstract
In this article, we introduce a numerical technique for solving a class of multi-term variable-order fractional differential equation.The method depends on establishing a shifted Jacobi operational matrix (SJOM) of fractional variable-order derivatives. By using the constructed (SJOM) in combination with the collocation technique, the main problem is reduced to an algebraic system of equations that can be solved numerically. The bound of the error estimate for the suggested method is investigated. Numerical examples are introduced to illustrate the applicability, generality, and accuracy of the proposed technique. Moreover, many physical applications problems that have the multi-term variable-order fractional differential equation formulae such as the damped mechanical oscillator problem and Bagley-Torvik equation can be solved via the presented method. Furthermore, the proposed method will be considered as a generalization of many numerical techniques.
Description
Agarwal, Praveen/0000-0001-7556-8942
ORCID
Keywords
Multi-Term Fractional Variable-Order Differential Equations, Jacobi Polynomials, Caputo Differential Operator, Operational Matrix, Q1-390, jacobi polynomials, caputo differential operator, Science (General), operational matrix, multi-term fractional variable-order differential equations
Fields of Science
0103 physical sciences, 0101 mathematics, 01 natural sciences
Citation
El-Sayed, A. A.; Baleanu, Dumitru; Agarwal, P. (2020). "A novel Jacobi operational matrix for numerical solution of multi-term variable-order fractional differential equations", Journal of Taibah University For Science, Vol. 14, No. 1, pp. 963-974.
WoS Q
Q1
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OpenCitations Citation Count
41
Source
Journal of Taibah University for Science
Volume
14
Issue
1
Start Page
963
End Page
974
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CrossRef : 41
Scopus : 52
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Mendeley Readers : 4
SCOPUS™ Citations
54
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Web of Science™ Citations
42
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Page Views
2
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