
arXiv: 1108.0608
We describe an expansion of Legendre polynomials, analogous to the Taylor expansion, to approximate arbitrary functions. We show that the polynomial coefficients in Legendre expansion, therefore the whole series, converge to zero much more rapidly compared to the Taylor expansion of the same order. Furthermore, using numerical analysis using sixth-order polynomial expansion, we demonstrate that the Legendre polynomial approximation yields an error at least an order of magnitude smaller than the analogous Taylor series approximation. This strongly suggests that Legendre expansions, instead of Taylor expansions, should be used when global accuracy is important.
6 pages, 1 figure
numerical examples, Numerical Analysis, Numerical approximation, Applied Mathematics, Legendre expansion, Numerical Analysis (math.NA), n/a OA procedure, Least squares, least squares, Legendre polynomial, Approximation by polynomials, Algorithms for approximation of functions, FOS: Mathematics, numerical approximation, 41A10, 65D15
numerical examples, Numerical Analysis, Numerical approximation, Applied Mathematics, Legendre expansion, Numerical Analysis (math.NA), n/a OA procedure, Least squares, least squares, Legendre polynomial, Approximation by polynomials, Algorithms for approximation of functions, FOS: Mathematics, numerical approximation, 41A10, 65D15
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