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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Design of a Novel Second-Order Prediction Differential Model Solved by Using Adams and Explicit Runge–Kutta Numerical Methods
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Design of a Novel Second-Order Prediction Differential Model Solved by Using Adams and Explicit Runge–Kutta Numerical Methods

机译:使用亚当斯和显式漫游 - 库特拉数值方法解决了一种新的二阶预测差分模型的设计

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In this study, a novel second-order prediction differential model is designed, and numerical solutions of this novel model are presented using the integrated strength of the Adams and explicit Runge–Kutta schemes. The idea of the present study comes to the mind to see the importance of delay differential equations. For verification of the novel designed model, four different examples of the designed model are numerically solved by applying the Adams and explicit Runge–Kutta schemes. These obtained numerical results have been compared with the exact solutions of each example that indicate the performance and exactness of the designed model. Moreover, the results of the designed model have been presented numerically and graphically.
机译:在该研究中,设计了一种新的二阶预测差分模型,并且使用亚当斯和显式跳动-Kutta方案的综合强度来提出这种新型模型的数值解。本研究的想法来到心灵中,看看延迟微分方程的重要性。为了验证新颖的设计模型,通过应用ADAMS和显式漫步-Kutta方案来计算设计模型的四个不同示例。这些获得的数值结果已经与每个示例的精确解决方案进行了比较,这表明所设计模型的性能和精确性。此外,设计的模型的结果已经在数值和图形上呈现。

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