Title of article :
A New Efficient High Order Four-Step Multiderivative Method for the Numerical Solution of Second-Order IVPs with Oscillating Solutions
Author/Authors :
Shokri, Ali Faculty of Mathematical Science - University of Maragheh, Maragheh, I. R. Iran , Mehdizadeh Khalsaraei, Mohammad Faculty of Mathematical Science - University of Maragheh, Maragheh, I. R. Iran
Pages :
16
From page :
157
To page :
172
Abstract :
In this paper, we present a new high order explicit four-step method of eighth algebraic order for solving second-order linear periodic and oscillatory initial value problems of ordinary differential equations such as undamped Duffing's equation. Numerical stability and phase properties of the new method is analyzed. The main structure of the method is multiderivative, and the combined phases were applied to expand the stability interval and to achieve P-stability. The advantage of the method in comparison with similar methods in terms of efficiency, accuracy, and stability is shown by its implementation in some well-known problems.
Keywords :
Phase-lag error , Initial value problems , P-stable , Symmetric multistep methods , Periodicity interval
Journal title :
Mathematics Interdisciplinary Research
Serial Year :
2020
Record number :
2605200
Link To Document :
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