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A numerical technique for solving fractional variational problems

机译:解决分数变分问题的数值技术

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This paper presents an accurate numerical method for solving a class of fractional variational problems (FVPs). The fractional derivative in these problems is in the Caputo sense. The proposed method is called fractional Chebyshev finite difference method. In this technique, we approximate FVPs and end up with a finite-dimensional problem. The method is based on the combination of the useful properties of Chebyshev polynomials approximation and finite difference method. The Caputo fractional derivative is replaced by a difference quotient and the integral by a finite sum. The fractional derivative approximation using Clenshaw and Curtis formula introduced here, along with Clenshaw and Curtis procedure for the numerical integration of a non-singular functions and the Rayleigh-Ritz method for the constrained extremum, is considered. By this method, the given problem is reduced to the problem for solving a system of algebraic equations, and by solving this system, we obtain the solution of FVPs. Special attention is given to study the convergence analysis and evaluate an error upper bound of the obtained approximate formula. Illustrative examples are included to demonstrate the validity and applicability of the proposed technique. A comparison with another method is given.
机译:本文提出了一种解决一类分数变分问题(FVP)的精确数值方法。这些问题的分数导数在Caputo的意义上。所提出的方法称为分数切比雪夫有限差分法。在这种技术中,我们近似FVP,并最终遇到有限维问题。该方法基于Chebyshev多项式逼近和有限差分法的有用特性的组合。 Caputo分数导数由差商代替,积分由有限和代替。考虑了使用此处介绍的Clenshaw和Curtis公式的分数阶导数逼近,以及用于非奇异函数数值积分的Clenshaw和Curtis程序以及约束极值的Rayleigh-Ritz方法。通过这种方法,将给定的问题简化为求解代数方程组的问题,并且通过求解该系统,我们获得了FVP的解。特别注意研究收敛性分析并评估所获得的近似公式的误差上限。包括说明性示例以证明所提出技术的有效性和适用性。给出了与另一种方法的比较。

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