Theoretical and Numerical Study for Volterra-Fredholm Fractional Integro-Differential Equations Based on Chebyshev Polynomials of the Third Kind

Zineb Laouar, N. Arar, A. B. Makhlouf
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Abstract

In this paper, we develop an efficient numerical method to approximate the solution of fractional integro-differential equations (FI-DEs) of mixed Volterra−Fredholm type using spectral collocation method with shifted Chebyshev polynomials of the third kind (S-Cheb-3). The fractional derivative is described in the Caputo sense. A Chebyshev−Gauss quadrature is involved to evaluate integrals for more precision. Two types of equations are studied to obtain algebraic systems solvable using the Gauss elimination method for linear equations and the Newton algorithm for nonlinear ones. In addition, an error analysis is carried out. Six numerical examples are evaluated using different error values (maximum absolute error, root mean square error, and relative error) to compare the approximate and the exact solutions of each example. The experimental rate of convergence is calculated as well. The results validate the numerical approach’s efficiency, applicability, and performance.
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基于第三类Chebyshev多项式的Volterra-Fredholm分数阶积分微分方程的理论与数值研究
本文提出了一种有效的数值逼近混合Volterra - Fredholm型分数阶积分微分方程(FI-DEs)解的方法,该方法使用了第三类移位Chebyshev多项式(S-Cheb-3)的谱配置法。分数阶导数是用卡普托意义来描述的。一个切比雪夫-高斯正交涉及到计算更精确的积分。研究了两类方程,分别用高斯消元法求解线性方程组和用牛顿算法求解非线性方程组。此外,还进行了误差分析。使用不同的误差值(最大绝对误差、均方根误差和相对误差)对六个数值示例进行评估,以比较每个示例的近似解和精确解。并计算了实验收敛速率。结果验证了数值方法的有效性、适用性和性能。
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