APPROXIMATION OF CLASSES OF POISSON INTEGRALS BY REPEATED FEJER SUMS

Author:

Rovenska O.

Abstract

The paper is devoted to the approximation by arithmetic means of Fourier sums of classes of periodic functions of high smoothness. The simplest example of a linear approximation of continuous periodic functions of a real variable is the approximation by partial sums of the Fourier series. The sequences of partial Fourier sums are not uniformly convergent over the class of continuous periodic functions. A significant number of works is devoted to the study of other approximation methods, which are generated by transformations of Fourier sums and allow us to construct trigonometrical polynomials that would be uniformly convergent for each continuous function. Over the past decades, Fejer sums and de la Vallee Poussin sums have been widely studied. One of the most important direction in this field is the study of the asymptotic behavior of upper bounds of deviations of linear means of Fourier sums on different classes of periodic functions. Methods of investigation of integral representations of deviations of trigonometric polynomials generated by linear methods of summation of Fourier series, were originated and developed in the works of S.M. Nikolsky, S.B. Stechkin, N.P. Korneichuk, V.K. Dzadyk and others. The aim of the work systematizes known results related to the approximation of classes of Poisson integrals by arithmetic means of Fourier sums, and presents new facts obtained for particular cases. In the paper is studied the approximative properties of repeated Fejer sums on the classes of periodic analytic functions of real variable. Under certain conditions, we obtained asymptotic formulas for upper bounds of deviations of repeated Fejer sums on classes of Poisson integrals. The obtained formulas provide a solution of the corresponding Kolmogorov-Nikolsky problem without any additional conditions.

Publisher

Yuriy Fedkovych Chernivtsi National University

Subject

Computer Science Applications,History,Education

Reference13 articles.

1. Nikolskiy S.M. Approximation of the functions by trigonometric polynomials in the mean. Izvestiya Akademii Nauk, Seriya Matematicheskaya, 1946, 10 (3), P. 207–256. (in Russian)

2. Stechkin S.B. Estimation of the remainder of Fourier series for the differentiable functions Trudy Matematicheskogo Instituta imeni V.A. Steklova, 1980, 145, P. 126–151. (in Russian)

3. Rukasov V.I., Chaichenko, S.O. Approximation of the classes of analytical functions by de la Vallee-Poussin sums. Ukrainian Mathematical Journal, 2002, 54, P. 2006–2024.

4. Serdyuk A.S. Approximation of Poisson integrals by de la Vallee Poussin sums. Ukrainian Mathematical Journal, 2004, 56, P. 122–134. doi:10.1023/B:UKMA.0000031707.50226.b9.

5. Savchuk V.V., Savchuk M.V., Chaichenko S.O. Approximation of analytic functions by de la Vallee Poussin sums. Matematychni Studii, 2010, 34 (2), P. 207–219. (in Ukrainian)

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. On rational approximations of Poisson integrals on the interval by Fejer sums of Fourier – Chebyshev integral operators;Proceedings of the National Academy of Sciences of Belarus. Physics and Mathematics Series;2023-10-02

2. Approximation of classes of Poisson integrals by Fejer means;V. N. Karazin Kharkiv National University. Ser. Mathematics, Applied Mathematics and Mechanics;2023-05-16

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