Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4966030 | Engineering Analysis with Boundary Elements | 2017 | 9 Pages |
Abstract
This paper presents improved ways of constructing compact integrated radial basis function (CIRBF) stencils, based on extended precision, definite integrals, higher-order IRBFs and minimum number of derivative equations, to enhance their performance over large values of the RBF width. The proposed approaches are numerically verified through second-order linear differential equations in one and two variables. Significant improvements in the matrix condition number, solution accuracy and convergence rate with grid refinement over the usual approaches are achieved.
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Computer Science Applications
Authors
N. Mai-Duy, T.T.V. Le, C.M.T. Tien, D. Ngo-Cong, T. Tran-Cong,