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首页> 外文期刊>Numerical Methods for Partial Differential Equations: An International Journal >Error and stability analysis of numerical solution for the time fractional nonlinear Schrodinger equation on scattered data of general-shaped domains
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Error and stability analysis of numerical solution for the time fractional nonlinear Schrodinger equation on scattered data of general-shaped domains

机译:普通型畴散射数据分数非线性Schrodinger方程数值解的误差与稳定性分析

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摘要

In present work, a kind of spectral meshless radial point interpolation (SMRPI) technique is applied to the time fractional nonlinear Schrodinger equation in regular and irregular domains. The applied approach is based on erudite combination of meshless methods and spectral collocation techniques. The point interpolation method with the help of radial basis functions is used to construct shape functions which play as basis functions in the frame of SMRPI. It is proved the scheme is unconditionally stable with respect to the time variable in L-2 and also convergent by the order of convergence 1. In the current work, the thin plate spline are used as the basis functions and to eliminate the nonlinearity, a simple predictor-corrector (P-C) scheme is performed. It is shown that the SMRPI solution, as a complex function, is suitable one for the time fractional nonlinear Schrodinger equation. The results of numerical experiments are compared to analytical solutions to confirm the reliable treatment of these stable solutions. (c) 2016 Wiley Periodicals, Inc. Numer Methods Partial Differential Eq 33: 1043-1069, 2017
机译:在目前的工作中,一种谱无线辐射点插值(SMRPI)技术应用于规则和不规则域中的时间分数非线性薛定峰方程。所应用的方法是基于无丝石方法和光谱搭配技术的秘密组合。点插补方法在径向基函数的帮助下用于构造形状函数,其在SMRPI帧中播放的基本函数。事实证明,该方案对L-2中的时间变量无条件地稳定,并且通过收敛顺序的收敛性1.在当前工作中,薄板样条用作基本函数并消除非线性,a执行简单的预测器校正器(PC)方案。结果表明,用于复杂功能的SMRPI解决方案是用于时间分数非线性Schrodinger方程的SMRPI解决方案。将数值实验结果与分析溶液进行比较,以确认这些稳定解决方案的可靠处理。 (c)2016 Wiley期刊,Inc。数值方法部分差分EQ 33:2017年1043-1069,2017

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