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Explicit exponentially fitted two-step hybrid methods of high order for second-order oscillatory IVPs

机译:二阶振荡IVP的高阶显式指数拟合两步混合方法

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The construction of exponentially fitted (EF) two-step hybrid methods for the numerical integration of oscillatory second-order IVPs is analyzed. These methods integrate exactly differential systems whose solutions can be expressed as linear combinations of the set of functions {exp (lambda t), exp (-lambda t)}, lambda is an element of not subset of, or equivalently {sin (omega t), cos (omega t)} when lambda = i omega, omega is an element of IR, where lambda represents an approximation of the main frequency of the problem. The necessary and sufficient conditions for this class of EF hybrid methods to have algebraic order p are derived. With the help of these order conditions and the EF conditions we construct explicit EF two-step hybrid methods with symmetric nodes and weights and orders six and seven. The numerical experiments carried out with several orbital and oscillatory problems show that the new high order EF two-step hybrid methods are more efficient than other EF and standard codes proposed in the scientific literature. (C) 2015 Elsevier Inc. All rights reserved.
机译:分析了用于振荡二阶IVP数值积分的指数拟合(EF)两步混合方法的构造。这些方法精确地集成了微分系统,其解可以表示为函数集{exp(lambda t),exp(-lambda t)}的线性组合,lambda是不属于{sin(omega t ),cos(omega t)},当lambda = i omega时,omega是IR的元素,其中lambda代表问题主要频率的近似值。推导了这类EF混合方法具有代数阶p的充要条件。借助这些阶数条件和EF条件,我们构造了具有对称节点和权重且阶数为6和7的显式EF两步混合方法。对几个轨道和振荡问题进行的数值实验表明,新的高阶EF两步混合方法比科学文献中提出的其他EF和标准代码更有效。 (C)2015 Elsevier Inc.保留所有权利。

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