A new recursive scheme for solving the general fractional differential equation of the nonlinear Lienard’s equation

Author:

Mennouni Abdelazizi,Bougoffa Lazhar

Abstract

Purpose The purpose of this paper is to solve an initial-value problem for the general fractional differential equation of the nonlinear Lienard's equation. Design/methodology/approach A new recursive scheme is presented by combining the Adomian decomposition method with a magnificent recurrence formula and via the solutions of the well-known generalized Abel equation. Findings It is shown that the proposed method may offer advantages in computing the components yn; n = 1; 2; … in an easily computed formula. Also, the numerical experiments show that with few iterations of the recursive method, this technique converges swiftly and accurately. Originality/value The approach is original, and a reasonably accurate solution can be achieved with only two components. Moreover, the proposed method can be applied to several nonlinear models in science and engineering.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference22 articles.

1. The homotopy analysis method and the Lienard equation;International Journal of Computer Mathematics,2011

2. Analytic solution of nonlinear boundary-value problems in several dimensions by decomposition;Journal of Mathematical Analysis and Applications,1993

3. Numerical simulation of the fractional Lienard’s equation;International Journal of Numerical Methods for Heat and Fluid Flow,2020

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