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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Application of a new hybrid method for solving singular fractional Lane-Emden-type equations in astrophysics
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Application of a new hybrid method for solving singular fractional Lane-Emden-type equations in astrophysics

机译:一种新的混合方法在天体物理学中的奇异分数车道型方程的应用

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摘要

In this research, a hybrid numerical method combining cosine and sine (CAS) wavelets and Green's function approach is created to acquire the arrangements of fractional Lane- Emden Problem. The suggested methodology for detecting the solution of nonlinear equations dependent on variations of germinal algorithms is applied on nonlinear fractional Lane-Emden Problem under some smooth conditions and results in an iterative scheme of nonlinear equations Because of its efficiency, this technique is applied on a large variety of equations from the boundary value problems to the optimization. This paper is extending the suggested methodology technique for fractional Lane-Emden Problem. Moreover, the feature of the present novel method is utilized to convert the problem under observance into a system of algebraic equations that can be illuminated by suitable algorithms. A rapprochement of results has likewise been obtained using the present strategy and those reported using other techniques seem to indicate the precision and computational efficiency to establish the suitability of the Green-CAS wavelet method.
机译:在该研究中,创建了一种结合余弦和正弦波(CAS)小波和绿色功能方法的混合数值方法,以获取分数通道问题的布置。用于检测依赖于发芽算法变化的非线性方程溶液的建议方法在一些平滑条件下应用于非线性分数车道问题,并且由于其效率而导致非线性方程的迭代方案,这项技术应用于大型从边界值问题到优化的各种方程式。本文正在延长建议的分数车道问题的方法技术。此外,本发明的新方法的特征用于将遵守的问题转换为可以通过合适的算法照射的代数方程的系统。使用本发明的策略同样获得了结果的和解结果,并且使用其他技术报告的那些似乎表明了建立绿色CAS小波法的适用性的精度和计算效率。

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