Error Analysis of Truncation Legendre Method for Solving Numerical Differentiation

Fuente: arXiv
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Main Author: Kyselov, Maksym
Format: Preprint
Published: 2025
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author Kyselov, Maksym
author_facet Kyselov, Maksym
contents We study the problem of numerical differentiation of functions from weighted Wiener classes. We construct and analyze a truncation Legendre method to recover arbitrary order derivatives. The main focus is on obtaining error estimates in integral and uniform metrics. Unlike previous studies, which predominantly focused on first-order derivatives and specific functional spaces, we conduct a comprehensive analysis across a wide spectrum of function regularity parameters and various metrics for measuring errors. We establish precise error bounds for the truncation method in the metrics of C and L_q for 2 less than or equal to q less than or equal to infinity, and determine optimal truncation parameters as functions of the error level and smoothness parameters. Our results demonstrate that the truncation method achieves optimal convergence rates on weighted Wiener classes, requiring an optimal number of perturbed Fourier-Legendre coefficients for effective derivative recovery.
format Preprint
id arxiv_https___arxiv_org_abs_2506_11529
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Error Analysis of Truncation Legendre Method for Solving Numerical Differentiation
Kyselov, Maksym
Numerical Analysis
65D25, 41A25, 42C10
We study the problem of numerical differentiation of functions from weighted Wiener classes. We construct and analyze a truncation Legendre method to recover arbitrary order derivatives. The main focus is on obtaining error estimates in integral and uniform metrics. Unlike previous studies, which predominantly focused on first-order derivatives and specific functional spaces, we conduct a comprehensive analysis across a wide spectrum of function regularity parameters and various metrics for measuring errors. We establish precise error bounds for the truncation method in the metrics of C and L_q for 2 less than or equal to q less than or equal to infinity, and determine optimal truncation parameters as functions of the error level and smoothness parameters. Our results demonstrate that the truncation method achieves optimal convergence rates on weighted Wiener classes, requiring an optimal number of perturbed Fourier-Legendre coefficients for effective derivative recovery.
title Error Analysis of Truncation Legendre Method for Solving Numerical Differentiation
topic Numerical Analysis
65D25, 41A25, 42C10
url https://arxiv.org/abs/2506.11529