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A Zero-Stable Optimal Order Method for Direct Solution of Second Order Differential Equations | Science Publications

机译:二阶微分方程直接解的零稳定最优阶方法科学出版物

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> Problem statement: In this study, a numerical method for direct solution of general second order differential equations was considered in order to circumvent the problems of computational burden and computer time wastage associated with method of reduction to system of first order equations. The issue of zero stability of higher order methods is considered in the development of the method. Approach: The method was developed based on collocation and interpolation approach using power series as the basis function to the solution of the problem. The basic properties of the method were considered. A consistent symmetric and zero stable main predictor of order five was also developed for the evaluation of the implicit scheme. The accuracy of the developed method is tested with test problems. Results: The method was zero-stable, consistent and normalized. The order of accuracy was found to be optimal. Both the main method and the predictor were obtained to be normalized and zero-stable. Conclusion/Recommendations: Comparison of the derived method with an existing method of the same order of accuracy showed a higher accuracy of the derived method. In the later research, this accuracy will be improved by developing the main predictor of the same order of accuracy with the main method.
机译: > 问题陈述:在本研究中,考虑了一种直接求解一般二阶微分方程的数值方法,以避免与之相关的计算负担和计算机时间浪费问题化为一阶方程组的方法在方法开发中考虑了高阶方法的零稳定性问题。 方法:该方法是基于并置和插值方法,以幂级数作为基础函数来解决问题的。考虑了该方法的基本性质。还开发了一个五阶一致的对称且零稳定的主预测因子,用于评估隐式方案。所开发方法的准确性已通过测试问题进行了测试。 结果:该方法是零稳定,一致且标准化的。发现准确性的顺序是最佳的。主要方法和预测变量均获得归一化和零稳定。 结论/建议:将派生方法与精度相同的现有方法进行比较表明派生方法具有更高的准确性。在以后的研究中,将通过使用main方法开发具有相同精确度的主要预测变量来提高此精确度。

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