On Better Approximation Order for the Max-Product Meyer-K\"onig and Zeller Operator
Functional Analysis
2024-10-04 v4
Abstract
In [5], Bede et al. defined the max-product Meyer-K\"{o}nig and Zeller operator. They examined the approximation and shape preserving properties of this operator, and they found the order of approximation to be by the modulus of continuity and claimed that this order of approximation could only be improved in certain subclasses of the functions. In contrast to this claim, we demonstrate that we can obtain a better order of approximation without reducing the function class by the classical modulus of continuity. We find the degree of approximation to be \frac{\left( 1-y\right) y^{\frac{1}{% \alpha }}}{m^{1-\frac{1}{\alpha }}}, . Since 1-\frac{1}{% \alpha } tends to for enough big , we improve this degree of approximation.
Keywords
Cite
@article{arxiv.2307.06421,
title = {On Better Approximation Order for the Max-Product Meyer-K\"onig and Zeller Operator},
author = {Sezin Çit Ogun Dogru},
journal= {arXiv preprint arXiv:2307.06421},
year = {2024}
}