English

High Accuracy Quasi-Interpolation using a new class of generalized Multiquadrics

Numerical Analysis 2023-09-07 v1 Numerical Analysis

Abstract

A new generalization of multiquadric functions ϕ(x)=c2d+x2d\phi(x)=\sqrt{c^{2d}+||x||^{2d}}, where xRnx\in\mathbb{R}^n, cRc\in \mathbb{R}, dNd\in \mathbb{N}, is presented to increase the accuracy of quasi-interpolation further. With the restriction to Euclidean spaces of odd dimensionality, the generalization can be used to generate a quasi-Lagrange operator that reproduces all polynomials of degree 2d12d-1. In contrast to the classical multiquadric, the convergence rate of the quasi-interpolation operator can be significantly improved by a factor h2dn1h^{2d-n-1}, where h>0h>0 represents the grid spacing. Among other things, we compute the generalized Fourier transform of this new multiquadric function. Finally, an infinite regular grid is employed to analyse the properties of the aforementioned generalization in detail.

Keywords

Cite

@article{arxiv.2309.03134,
  title  = {High Accuracy Quasi-Interpolation using a new class of generalized Multiquadrics},
  author = {Mathis Ortmann and Martin Buhmann},
  journal= {arXiv preprint arXiv:2309.03134},
  year   = {2023}
}