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首页> 外文期刊>Theoretical Chemistry Accounts >Gradient incorporation in one-dimensional applications of interpolating moving least-squares methods for fitting potential energy surfaces
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Gradient incorporation in one-dimensional applications of interpolating moving least-squares methods for fitting potential energy surfaces

机译:一维应用内插移动最小二乘法拟合势能面的梯度合并

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摘要

We present several approaches to use gradients in higher degree interpolating moving least squares (IMLS) methods for representing a potential energy surface (PES). General procedures are developed to obtain smooth approximations of the PES and its derivatives from quasi-uniform sets of energy and gradient data points. These methods are illustrated and analyzed for the Morse oscillator and a 1-D slice of the ground-state PES for the HCO radical computed using density functional theory. Variations in the IMLS fits with the number and distribution of points and the degree of the polynomial fitting basis set are examined. We determine the effects of gradient inclusion on the accuracy of the IMLS values of the energy, first and second derivatives for two 1-D test cases. Gradient inclusion reduces the number of data points required by up to 40%.
机译:我们提出了几种在高次插值移动最小二乘(IMLS)方法中使用梯度表示势能面(PES)的方法。开发了通用程序,以从能量和梯度数据点的准均匀集合中获得PES及其衍生物的平滑近似。这些方法针对摩尔斯振荡器和使用密度泛函理论计算的HCO自由基的基态PES的一维切片进行了说明和分析。检验IMLS随点数和分布的变化以及多项式拟合基础集的程度。我们确定了梯度包含对两个一维测试用例的能量,一阶和二阶导数的IMLS值精度的影响。渐变包含可将所需的数据点数量最多减少40%。

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