Optimized fourth-order Runge-Kutta method for solving oscillatory problems
Kasim Abbas Hussain, Fudziah Bt Ismail, Norazak Senu, Faranak Rabiei
Abstract
Kasim Abbas Hussain, Fudziah Bt Ismail, Norazak Senu, Faranak Rabiei
Abstract
In this article, we develop a Runge-Kutta method with invalidation of phase lag, phase lag’s derivatives and amplification error to solve second-order initial value problem (IVP) with oscillating solutions. The new method depends on the explicit Runge-Kutta method of algebraic order four. Numerical tests from its implementation to well-known oscillatory problems illustrate the robustness and competence of the new method as compared to the well-known Runge-Kutta methods in the scientific literature.
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In this article, we develop a Runge-Kutta method with invalidation of phase lag, phase lag’s derivatives and amplification error to solve second-order initial value problem (IVP) with oscillating solutions. The new method depends on the explicit Runge-Kutta method of algebraic order four. Numerical tests from its implementation to well-known oscillatory problems illustrate the robustness and competence of the new method as compared to the well-known Runge-Kutta methods in the scientific literature.
Key concepts: Runge–Kutta methods, Phase lag, Robustness (evolution), Applied mathematics, Algebraic number, Lag, Initial value problem, Mathematics