
arXiv: 2301.05881
AbstractIn computational practice, most attention is paid to rational approximations of functions and approximations by the sum of exponents. We consider a wide enough class of nonlinear approximations characterized by a set of two required parameters. The approximating function is linear in the first parameter; these parameters are assumed to be positive. The individual terms of the approximating function represent a fixed function that depends nonlinearly on the second parameter. A numerical approximation minimizes the residual functional by approximating function values at individual points. The second parameter's value is set on a more extensive set of points of the interval of permissible values. The proposed approach's key feature consists in determining the first parameter on each separate iteration of the classical nonnegative least squares method. The computational algorithm is used to rational approximate the function . The second example concerns the approximation of the stretching exponential function at by the sum of exponents.
Numerical computation of matrix exponential and similar matrix functions, 26A33, 35R11, 65F60, 65M06, nonlinear approximation of function, Numerical Analysis (math.NA), Fractional partial differential equations, Fractional derivatives and integrals, Finite difference methods for initial value and initial-boundary value problems involving PDEs, FOS: Mathematics, nonnegative least squares method, approximation by the sum of exponents, Mathematics - Numerical Analysis, rational approximation
Numerical computation of matrix exponential and similar matrix functions, 26A33, 35R11, 65F60, 65M06, nonlinear approximation of function, Numerical Analysis (math.NA), Fractional partial differential equations, Fractional derivatives and integrals, Finite difference methods for initial value and initial-boundary value problems involving PDEs, FOS: Mathematics, nonnegative least squares method, approximation by the sum of exponents, Mathematics - Numerical Analysis, rational approximation
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