The conditional stability and an iterative regularization method for a fractional inverse elliptic problem of Tricomi-Gellerstedt-Keldysh type
The present paper is devoted to identifying an inaccessible boundary condition for a fractional elliptic problem of Tricomi-Gellerstedt-Keldysh-type. Using the expansion Fourier method, the considered problem can be reformulated as an operator equation of the first kind. To construct a stabilized ap...
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Published in | Mathematical modelling and analysis Vol. 29; no. 1; pp. 23 - 45 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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Vilnius
Vilnius Gediminas Technical University
22.02.2024
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ISSN | 1392-6292 1648-3510 |
DOI | 10.3846/mma.2024.16783 |
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Abstract | The present paper is devoted to identifying an inaccessible boundary condition for a fractional elliptic problem of Tricomi-Gellerstedt-Keldysh-type. Using the expansion Fourier method, the considered problem can be reformulated as an operator equation of the first kind. To construct a stabilized approximate solution we employ a variant of the iterative method. We also present error estimates between the exact solution and the regularized solution by the a priori and the a posteriori parameter choice rules. Finally, some numerical verifications on the efficiency and accuracy of the proposed algorithm is presented. |
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AbstractList | The present paper is devoted to identifying an inaccessible boundary condition for a fractional elliptic problem of Tricomi-Gellerstedt-Keldysh-type. Using the expansion Fourier method, the considered problem can be reformulated as an operator equation of the first kind. To construct a stabilized approximate solution we employ a variant of the iterative method. We also present error estimates between the exact solution and the regularized solution by the a priori and the a posteriori parameter choice rules. Finally, some numerical verifications on the efficiency and accuracy of the proposed algorithm is presented. The present paper is devoted to identifying an inaccessible boundary condition for a fractional elliptic problem of Tricomi-Gellerstedt-Keldysh-type. Using the expansion Fourier method, the considered problem can be reformulated as an operator equation of the first kind. To construct a stabilized approximate solution we employ a variant of the iterative method. We also present error estimates between the exact solution and the regularized solution by the a priori and the a posteriori parameter choice rules. Finally, some numerical verifications on the efficiency and accuracy of the proposed algorithm is presented. Keywords: fractional elliptic equations, Tricomi-Gellerstedt-Keldysh equations, ill-posed problems, inverse problems, a posteriori parameter choice rule, iterative regularization method. AMS Subject Classification: 35R25; 35R30; 65J22; 34K37. |
Audience | Academic |
Author | Djemoui, Sebti Meziani, Mohamed S. E. Boussetila, Nadjib |
Author_xml | – sequence: 1 givenname: Sebti orcidid: 0000-0002-1440-6234 surname: Djemoui fullname: Djemoui, Sebti organization: Higher School of industrial Technologies Annaba, P.O.Box 218, Safsaf, 23000 Annaba, Algeria – sequence: 2 givenname: Mohamed S. E. surname: Meziani fullname: Meziani, Mohamed S. E. organization: Department of Mathematics, ENSET Skikda, frères Bouceta, Azzaba, 21001 Skikda, Algeria – sequence: 3 givenname: Nadjib surname: Boussetila fullname: Boussetila, Nadjib organization: Department of Mathematics, University 8 Mai 1945, P.O.Box 401, 24000 Guelma, Algeria |
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SubjectTerms | a posteriori parameter choice rule Algorithms Analysis Boundary conditions Boundary value problems Exact solutions fractional elliptic equations Functions, Elliptic ill-posed problems Inverse problems Iterative methods Iterative methods (Mathematics) iterative regularization method Partial differential equations Regularization Regularization methods Stability Tests, problems and exercises Tricomi-Gellerstedt-Keldysh equations |
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Title | The conditional stability and an iterative regularization method for a fractional inverse elliptic problem of Tricomi-Gellerstedt-Keldysh type |
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