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Approximation of conic section by quartic Bzier curve with endpoints continuity condition 被引量:1
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作者 LIU Yu XU Chen-dong 《Applied Mathematics(A Journal of Chinese Universities)》 SCIE CSCD 2017年第1期1-13,共13页
A new method for approximation of conic section by quartic B′ezier curve is presented, based on the quartic B′ezier approximation of circular arcs. Here we give an upper bound of the Hausdorff distance between the c... A new method for approximation of conic section by quartic B′ezier curve is presented, based on the quartic B′ezier approximation of circular arcs. Here we give an upper bound of the Hausdorff distance between the conic section and the approximation curve, and show that the error bounds have the approximation order of eight. Furthermore, our method yields quartic G2 continuous spline approximation of conic section when using the subdivision scheme,and the effectiveness of this method is demonstrated by some numerical examples. 展开更多
关键词 conic continuity Hausdorff approximate Approximation circular interpolation coordinates graphics symmetric
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基于两部模型的组合惩罚似然估计方法研究及其应用
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作者 张旭宇 赵丽华 《应用数学进展》 2020年第6期881-891,共11页
在统计学中,多借助零膨胀模型研究零膨胀数据潜在的模型结构及变量选择问题。然而,在多数情况下,响应变量的非零部分为定量数据,简单的零膨胀模型无法刻画这类数据的模型结构,对应的参数估计方法也不再适用。鉴于此,学者提出处理零膨胀... 在统计学中,多借助零膨胀模型研究零膨胀数据潜在的模型结构及变量选择问题。然而,在多数情况下,响应变量的非零部分为定量数据,简单的零膨胀模型无法刻画这类数据的模型结构,对应的参数估计方法也不再适用。鉴于此,学者提出处理零膨胀半连续数据的两部模型。本文将组合惩罚似然估计方法引入两部模型,研究其变量选择问题。提出一种新的处理高维统计分析问题的惩罚似然估计方法:NCPM (New Combined Punishment Method),并将该方法应用于太原市降水量数据,分析其影响因素。模拟及实例分析结果均表明本文的方法行之有效,较传统的惩罚似然估计方法具有更高的预测精度。 展开更多
关键词 组合惩罚 两部模型 LLA-CGD (Local Linear Approximation and coordinate Gradient Descent)算法 变量选择 降水量
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Dielectric Breakdown Model for an Electrically Semi-Permeable Penny-Shaped Crack in Three-Dimensional Piezoelectric Media 被引量:1
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作者 Minghao Zhao Huayang Dang +1 位作者 Guangtao Xu Cuiying Fan 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2016年第5期536-546,共11页
The dielectric breakdown(DB) model for a penny-shaped crack under a semipermeable boundary condition in a three-dimensional piezoelectric medium is studied.An approximate analytical solution is derived by using the ... The dielectric breakdown(DB) model for a penny-shaped crack under a semipermeable boundary condition in a three-dimensional piezoelectric medium is studied.An approximate analytical solution is derived by using the boundary integral equation with extended displacement discontinuity,and the corresponding boundary element method with double iterative approaches is developed to analyze the semi-permeable crack.The effect of electric boundary conditions on crack faces is discussed on the basis of DB model.By comparing the DB model with the polarization saturation(PS) model for different piezoelectric materials,some interesting phenomena related to the electric yielding zone and local J-integral are observed. 展开更多
关键词 piezoelectric iterative discontinuity approximate dielectric normalized breakdown saturation permeable coordinates
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A Refined Theory of Axisymmetric Poroelastic Circular Cylinder
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作者 Di Wu Xiangyong Li +2 位作者 Lianying Yu Baosheng Zhao Yang Gao 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2016年第5期527-535,共9页
A refined theory of axisymmetric deformation of an isotropic poroelastic circular cylinder in a steady-state is presented directly by utilizing the general solutions and Lur'e method without any advance hypothesis.Th... A refined theory of axisymmetric deformation of an isotropic poroelastic circular cylinder in a steady-state is presented directly by utilizing the general solutions and Lur'e method without any advance hypothesis.The refined equations are derived under non-homogenous boundary conditions,and the approximate solutions are obtained by omitting higher-order terms.The all-inclusive refined equations and approximate solutions constitute the refined theory of circular cylinders.Correlative examples are brought up to analyze influences of liquid-solid coupling properties on the mechanical behavior of poroelastic materials.Moreover,the present results are converted into those of homologous pure elastic problem directly. 展开更多
关键词 refined cylinder approximate utilizing circular isotropic radial inclusive consolidation coordinates
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