Generalized high-order iterative methods for solutions of nonlinear systems and their applications

Author:

Thangkhenpau G1,Panday Sunil1,Panday Bhavna2,Stoenoiu Carmen E.34,Jäntschi Lorentz35

Affiliation:

1. Department of Mathematics, National Institute of Technology Manipur, Langol 795004, Manipur, India

2. Department of Mathematics, IES University Bhopal, Bhopal 462044 Madhya Pradesh, India

3. Laboratory of Electrochemistry in Advanced Materials, Technical University of Cluj-Napoca, Cluj-Napoca 400114, Romania

4. Electric Machines and Drives, Technical University of Cluj-Napoca, Cluj-Napoca 400114, Romania

5. Department of Physics and Chemistry, Technical University of Cluj-Napoca, Cluj-Napoca 400114, Romania

Abstract

<abstract><p>In this paper, we have constructed a family of three-step methods with sixth-order convergence and a novel approach to enhance the convergence order $ p $ of iterative methods for systems of nonlinear equations. Additionally, we propose a three-step scheme with convergence order $ p+3 $ (for $ p\geq3 $) and have extended it to a generalized $ (m+2) $-step scheme by merely incorporating one additional function evaluation, thus achieving convergence orders up to $ p+3m $, $ m\in\mathbb{N} $. We also provide a thorough local convergence analysis in Banach spaces, including the convergence radius and uniqueness results, under the assumption of a Lipschitz-continuous Fréchet derivative. Theoretical findings have been validated through numerical experiments. Lastly, the performance of these methods is showcased through the analysis of their basins of attraction and their application to systems of nonlinear equations.</p></abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

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