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Eular法解分数阶微分方程-eular method of fractional differential equations
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BDF法解分数阶微分方程-BDF method of fractional differential equations
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Eular法解分数阶微分方程,分数阶导数定义系数通过fourier法计算-eular method of fractional differential equations, fractional derivative definition coefficient calculated by fourier
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BDF法解分数阶微分方程,分数阶导数定义系数通过fourier法计算-BDF method of fractional differential equations, fractional derivative definition coefficient calculated by fourier
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Eular法解分数阶微分方程,分数阶导数定义系数通过fourier法计算,阶数a变化-eular method of fractional differential equations, fractional derivative coefficient defined by fourier law, order a change
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常用算法大合集;
包括插值、查找、常微分方程组求解、多项工与连分式函数计算、非线性方程与方程组求解、复数运算、汉字操作、基本图形操作、极值问题、矩阵特征值与特征向量的计算、矩阵运算、拟合与逼近、排序、数据处理与回归分析、数学变换与滤波、数值积分、随机数产生、特征函数、图形模式下读写屏幕象点、线性代数方程组求解等C语言算法-algorithms big Collection; Including interpolation, locate, ordinary differential equa
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求解分数阶微分方程的Runge_Kutta方法Fractional Differential Equations of Runge_Kutta method-Fractional Differential Equations of Runge_Kutta method
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应用Oustaloup算法设计的滤波器理论,设计分数阶微分模块。用SIMULINK求解分数阶非线性微分方程-Application Oustaloup filter algorithm design theory, design, fractional differential module.Fractional Differential Equations with SIMULINK
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常用算法大合集; 包括插值、查找、常微分方程组求解、多项工与连分式函数计算、非线性方程与方程组求解、复数运算、汉字操作、基本图形操作、极值问题、矩阵特
-Commonly used algorithm for large collection including interpolation, find, ordinary differential equation solving, a number of workers and even fractional function, the
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matlab程序模拟微分方程。各种流行的系统显示混沌运动特征。-This toolbox contains the functions which can be used to simulate some of the well-known fractional order chaotic systems, such as:
- Chen s system,
- Arneodo s system,
- Genesio-Tesi s system,
- Lorenz s syste
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利用预估矫正方法解分数阶常微分方程,该方法适用于线性和非线性分数阶常微分方程-using PECE method to solve fractional ordinary differential equation
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用Adomain分解方法求解分数阶常微分方程组,线性的和非线性的方程组都可以。-using Adomian decompositon method to solve fractional differential equations
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该代码是求解分数阶线性常微分方程的代码,但是输入有限制-This function solves linear fractional-order differential equation
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一类分数阶微分方程初值问题的奇摄动A class of fractional differential equations initial value problem of singular perturbation-A class of fractional differential equations initial value problem of singular perturbation
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非线性分数阶微分方程非奇异边值问题的多重正解Nonlinear fractional differential equation nonsingular multiple positive solutions of boundary value problems-Nonlinear fractional differential equation nonsingular multiple positive solutions of boundary value problems
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Numerical simulation using the classical expression for the form of the second space derivative and the fractional differential scheme for the Grunwald–Letnikov operator-Numerical simulation using the classical expression for the form of the second
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The Matlab code FDE12 implements the Predictor-Corrector method of Adams-Bashforth-Moulton for the numerical solution of a non-linear fractional differential equation (FDE) (download the Matlab code FDE12).
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The Matlab code FDE12 implements the Predictor-Corrector method of Adams-Bashforth-Moulton for the numerical solution of a non-linear fractional differential equation (FDE)
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用mittaga-leffter函数求解分数阶微分方程. copyright:Igor Podlubny-Solution of fractional differential equation using mittaga- leffter function. copyright: Igor Podlubny
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数值求解时间分数阶微分方程,空间部分采用有限元离散,最后可以验证误差的L2范数达到最优收敛阶-Numerical Solution of the Time Fractional differential equations, finite element discrete space segment, the last error can verify the L2 norm of optimal order of convergence
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