A numerical scheme based on Gegenbauer wavelets for solving a class of relaxation–oscillation equations of fractional order

Owing to increasing applications of the fractional relaxation–oscillation equations across various scientific endeavours, a considerable amount of attention has been paid for solving these equations. Our endeavour is to develop an elegant numerical scheme based on Gegenbauer wavelets for solving the...

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Veröffentlicht in:Mathematical Sciences 2023-09, Vol.17 (3), p.233-245
Hauptverfasser: Nisar, Kottakkaran Sooppy, Shah, Firdous A.
Format: Artikel
Sprache:eng
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Zusammenfassung:Owing to increasing applications of the fractional relaxation–oscillation equations across various scientific endeavours, a considerable amount of attention has been paid for solving these equations. Our endeavour is to develop an elegant numerical scheme based on Gegenbauer wavelets for solving the fractional-order relaxation–oscillation equations. To facilitate the narrative, the Gegenbauer wavelets are presented and the corresponding operational matrix of fractional-order integration is constructed via the block pulse functions. The prime features of the Gegenbauer wavelets and block pulse functions are then utilized to reduce the system at hand into a set of algebraic equations, solved by means of Newton method. The efficiency and accuracy of the proposed numerical scheme are demonstrated via several illustrative examples.
ISSN:2008-1359
2251-7456
DOI:10.1007/s40096-022-00465-1