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An eighth-order exponentially fitted two-step hybrid method of explicit type for solving orbital and oscillatory problems

机译:八分之一指数拟合的两步混合方法,用于解决轨道和振荡问题的明确类型

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摘要

The construction of an eighth-order exponentially fitted (EF) two-step hybrid method for the numerical integration of oscillatory second-order initial value problems (IVPs) is considered. The EF two-step hybrid methods integrate exactly differential systems whose solutions can be expressed as linear combinations of exponential or trigonometric functions and have variable coefficients depending on the frequency of each problem. Based on the order conditions and the EF conditions for this class of methods, we construct an explicit EF two-step hybrid method with symmetric nodes and algebraic order eight which only uses seven function evaluations per step. This new method has the highest algebraic order we know for the case of explicit EF two-step hybrid methods. The numerical experiments carried out with several orbital and oscillatory problems show that the new eighth-order EF scheme is more efficient than other standard and EF two-step hybrid codes recently proposed in the scientific literature.
机译:考虑了八分之一拟合(EF)两步混合方法的八分之一的振动二阶初始值问题(IVPS)的两步混合方法。 EF两步混合方法集成了精确的差分系统,其解决方案可以被表示为指数或三角函数的线性组合,并且根据每个问题的频率具有可变系数。基于该类方法的订单条件和EF条件,我们构建一个具有对称节点的显式EF两步混合方法,并仅使用每个步骤七个功能评估。这种新方法具有最高的代数顺序,我们知道明确的EF两步混合方法的情况。具有多个轨道和振荡问题的数值实验表明,新的第八阶EF方案比在科学文献中最近提出的其他标准和EF两步混合码更有效。

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