搜索资源列表
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13下载:
求解时滞微分方程的龙格库塔方法!用matlab编写的。-Solving Delay Differential Equations Runge-Kutta methods! Prepared using matlab.
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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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插值
函数逼近
数值微分
数值积分
非线性方程求解
解线性方程组的直接解法
解线性方程组的迭代法
随机数生成
特殊函数计算
常微分方程的初值问题
偏微分方程的数值解法
数据统计和分析-Interpolation function approximation numerical integration of nonlinear differential equations numerical solution of linear equations
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牛顿迭代法是求解非线性微分方程中非常重要的一种算法,收敛速度快!本文提供算例和程序-Newton iterative method is very important for solving nonlinear differential equations an algorithm fast convergence speed! This article provides examples and procedures
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MATLAB求解偏微分方程 很详细 算例很多-MATLAB Solution partial differential equations in great detail
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Matlab微分方程求解,一个利用Matlab进行微分方程求解的教程,简单实用。-Matlab for solving differential equations, one for the use of Matlab for solving differential equations of the tutorial, simple and practical.
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判断微分方程是否为病态方程,分别用定步长、变步长和适合病态系统的数值积分方法对系统求解,并与解析解进行对比,分析每种方法的求解精度和速度。-To determine whether the pathological differential equations, were used to set step, variable step size and suitable for pathological system numerical method for solving the system
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matlab解微分方程的详细算法以及一些例子-matlab solutions of differential equations as well as some examples of the detailed algorithm
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MCM模型,偏微分方程的方法应用于图像处理,是一种较新的方法-MCM model, partial differential equations of the method has been applied to image processing, is a relatively new method
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用matlab解高维微分方程组一般少用到,但是最近看了这方面的例子,希望对用到的人有所帮助-Matlab solutions with high-dimensional differential equations in general less used, but recently read examples in this regard, I hope to help people who use
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基于偏微分方程的图像去噪中差分格式的研究一篇论文,给出了图像去噪的一种基本的研究方法,很有效-Based on partial differential equations of image denoising in a differential format research papers, image denoising is given one of the basic research methods, very effective
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这是一个基于偏微分方程的图像处理问题的非线性平滑滤波器的程序!-This is a partial differential equations based on the question of image processing procedures for non-linear smoothing filters!
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matlab 应用数学工具箱的使用,包括概率统计、偏微分方程等。-matlab toolbox of applied mathematics, including probability and statistics, such as partial differential equations.
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利用有限差分法 (Finite Differential Method, FDM)将场域离散为许多小网格,应用差分原理,将求解连续函数的泊松方程问题转换为求解网格节点上的差分方程组的问题。-The use of finite difference method (Finite Differential Method, FDM) will field for many small discrete grid, the application of differential principle, t
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该程序包含矩阵最大特征值上、下界估计、线性方程组的求解、非线性方程组的一个最新迭代方法、数值积分、微分方程数值解!-The program contains the largest eigenvalue matrix, the lower bound estimates, linear equations, nonlinear equations, a recent iterative method, numerical integration, numerical solution of di
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4下载:
(有源代码)数值分析作业,本文主要包括两个部分,第一部分是常微分方程(ODE)的三个实验题,第二部分是有关的拓展讨论,包括高阶常微分的求解和边值问题的求解(BVP).文中的算法和算例都是基于Matlab计算的.ODE问题从刚性(STIFFNESS)来看分为非刚性的问题和刚性的问题,刚性问题(如大系数的VDP方程)用通常的方法如ODE45来求解,效率会很低,用ODE15S等,则效率会高多了.而通常的非刚性问题,用ODE45来求解会有很好的效果.从阶次来看可以分为高阶微分方程和一阶常微分方程,高阶的
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解微分方程(组)的定步长四阶龙格库塔法算法源代码-Solution of differential equations (Group) of fixed step size fourth-order Runge-Kutta method algorithm source code
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这是SIR微分方程模型对初值问题的求解和作图-This is the SIR model differential equations to solve the problem of initial value and mapping
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基于Matlab对约瑟夫森结(Josephson Junction)RCSJ模型的交直流I-V特性及非线性混沌现象进行数值模拟。通过计算机数值模拟得到该模型的非线性微分方程数值解,研究了RCSJ模型中各参量对约瑟夫森结的影响,进而简要分析其I-V特性和非线性混沌现象的产生机理,绘制出约瑟夫森结的交直流I-V特性曲线、非线性微分方程的相图及因其高度非线性而引起的通过倍周期分岔和阵发性原理进入混沌状态的分岔图。还给出庞加莱截面及功率谱。-Matlab based on the Josephson j
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比较欧拉公式与matlab的ode方法解微分方程的不同-Comparison of the Euler formula for the ode with matlab different method to solve differential equations
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