Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures
In this study, we present two meshless schemes, namely the radial basis function (RBF) method and the polynomial method, for the numerical investigation of the time-fractional Harry Dym equation and the Drinfeld-Sokolov-Wilson system. In both methods, the temporal derivatives are estimated using the...
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my.uniten.dspace-370872025-03-03T15:47:21Z Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures Khan M.N. Ahmad I. Shakeel M. Jan R. 57205304990 57220824630 57219867187 57205596279 In this study, we present two meshless schemes, namely the radial basis function (RBF) method and the polynomial method, for the numerical investigation of the time-fractional Harry Dym equation and the Drinfeld-Sokolov-Wilson system. In both methods, the temporal derivatives are estimated using the Caputo operator, while the spatial derivatives are approximated either through radial basis functions or polynomials. Additionally, a collocation approach is employed to convert the system of equations into a system of linear equations that is easier to solve. The accuracy of the methods is assessed by calculating the L� error norm, and the outcomes are displayed through tables and figures. The simulation results indicate that both methods exhibit strong performance in handling the fractional partial differential equations (PDEs) under investigation. ? 2024 the Author(s), licensee AIMS Press. Final 2025-03-03T07:47:21Z 2025-03-03T07:47:21Z 2024 Article 10.3934/mmc.2024008 2-s2.0-85190239350 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85190239350&doi=10.3934%2fmmc.2024008&partnerID=40&md5=96a25b76e49d6108d11938219ab4a333 https://irepository.uniten.edu.my/handle/123456789/37087 4 1 86 100 All Open Access; Gold Open Access American Institute of Mathematical Sciences Scopus |
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In this study, we present two meshless schemes, namely the radial basis function (RBF) method and the polynomial method, for the numerical investigation of the time-fractional Harry Dym equation and the Drinfeld-Sokolov-Wilson system. In both methods, the temporal derivatives are estimated using the Caputo operator, while the spatial derivatives are approximated either through radial basis functions or polynomials. Additionally, a collocation approach is employed to convert the system of equations into a system of linear equations that is easier to solve. The accuracy of the methods is assessed by calculating the L� error norm, and the outcomes are displayed through tables and figures. The simulation results indicate that both methods exhibit strong performance in handling the fractional partial differential equations (PDEs) under investigation. ? 2024 the Author(s), licensee AIMS Press. |
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57205304990 |
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57205304990 Khan M.N. Ahmad I. Shakeel M. Jan R. |
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Khan M.N. Ahmad I. Shakeel M. Jan R. |
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Khan M.N. Ahmad I. Shakeel M. Jan R. Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
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Khan M.N. |
title |
Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
title_short |
Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
title_full |
Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
title_fullStr |
Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
title_full_unstemmed |
Fractional calculus analysis: investigating Drinfeld-Sokolov-Wilson system and Harry Dym equations via meshless procedures |
title_sort |
fractional calculus analysis: investigating drinfeld-sokolov-wilson system and harry dym equations via meshless procedures |
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American Institute of Mathematical Sciences |
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2025 |
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1826077329491755008 |
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13.244413 |