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DISTRIBUTED APPROXIMATING FUNCTIONAL APPROACH TO THE FOKKER-PLANCK EQUATION - EIGENFUNCTION EXPANSION

机译:福克-普朗克方程的分布式近似函数方法-本征函数展开

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摘要

The distributed approximating functional method is applied to the solution of the Fokker-Planck equations. The present approach is limited to the standard eigenfunction expansion method. Three typical examples, a Lorentz Fokker-Planck equation, a bistable diffusion model and a Henon-Heiles two-dimensional anharmonic resonating system, are considered in the present numerical testing. All results are in excellent agreement with those of established methods in the field. It is found that the distributed approximating functional method yields the accuracy of a spectral method but with a local method's simplicity and flexibility for the eigenvalue problems arising from the Fokker-Planck equations. (C) 1997 American Institute of Physics. [References: 55]
机译:分布式近似泛函方法适用于Fokker-Planck方程的解。本方法限于标准本征函数扩展方法。在当前的数值测试中,考虑了三个典型示例:洛伦兹·福克-普朗克方程,双稳态扩散模型和Henon-Heiles二维非谐谐振系统。所有结果均与本领域已建立的方法非常吻合。发现分布式近似泛函方法可以产生频谱方法的精度,但是对于由Fokker-Planck方程引起的特征值问题具有局部方法的简单性和灵活性。 (C)1997美国物理研究所。 [参考:55]

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