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1.
关于用多项式插值样条逼近连续函数已有许多研究。但至今很少有关于用三角插值样条逼近的结果。本文考虑用一阶三角插值样条逼近连续函数时的逼近度。用矩阵方法得到了相应的Jackson型的定理。  相似文献   

2.
战荫伟 《应用数学》1994,7(1):1112-118
本文指出,在一定条件下,对于一个二元样条空间,所考虑的三种剖分中的某些胞腔和网线可以消去,而前后两个三角剖分下样条空间的结构有着紧密的联系,从而可以用简单划分下的空间结构表示复杂剖分下的空间结构。该分解剖分的步骤可以递推的进行,尤其对S^1s。据此,本文还分析了剖分对S^12的奇异性并给出一组奇异的剖分。  相似文献   

3.
本文利用多元样条的协调条件、平面图理论和空间同构的方法建立了对于所有μ≥1,k≥4μ+1和任意三角剖分T的样条空间Skμ(T)的维数公式,对于一类尽可能任意的三角剖分T=T(μ),本文也给出了当k≥μ+1时Skμ(T)的维数公式。特别当μ=1,2时此类剖分在逼近问题上有明显的实用性。  相似文献   

4.
关于用样条函数逼近连续函数,有不少文献和专著(如[1],[2])。 关于误差估计,也有不少工作,亦有一些学者用高阶连续模对误差进行估计,例如:Nitche在[3]中证明了: 设f(x)是(-∞,∞)以1为周期的连续函数,J_hf是以等分节点{h_t},i=0,±1,  相似文献   

5.
首先给出了三角样条函数及其性质,然后在此基础上给出了一种构造三角样条小波的新方法.该方法简单易行,而且构造出的小波具有许多良好的性质,如对称性(具有线性相位或广义线性相位)、良好的时频局部特性、短支集及半正交性等,这些对信号处理是非常重要的.  相似文献   

6.
孙倩 《大学数学》2006,22(2):47-52
基于一类C3连续的三角样条基函数,首先分别构造了含参数α的C2和C3连续的三角样条插值曲线,然后通过在基函数中引入参数λ,构造了含两个参数α,λ的形状可调控插值曲线,通过α,λ的不同取值,可得到一类有较好保凸和保单调效果的插值曲线,最后用图例验证了理论的有效性和正确性.  相似文献   

7.
本文中我们提出一类特殊的H-B插值问题,即所谓混合插值.我们首先讨论五次样条,它是将Meir和Sharma的缺插值样条中的二阶导数的逐点插值换成一阶导数与二阶导数的交替插值.然后又讨论了三次样条,将[3]中讨论的(p)型插值改成一阶导数及函数值本身在节点处的交替插值.我们研究了这两类样条的存在、唯一性,并得到了它  相似文献   

8.
本文讨论了在箱样条及其平移所张的子空间上进行多元样条插值的问题。着重考虑了二维情形。结果表明插值的可行性与插值点的位置有关。本文还验证了一些重要插值问题的可行性及不可行性。  相似文献   

9.
关于有理样条函数   总被引:2,自引:0,他引:2  
  相似文献   

10.
徐士英 《计算数学》1981,3(3):262-265
在S_(n△)。中有唯一解.令P_△f=s(x),s(x)是对f(x)关于上述插值问题(1)的解,J.Tzi-mbalario证明投影算子P_△:C~(-1)[a,b]→S_(n△)是有界的,这里C~(-1)[a,b]是[a,b]上有界函数全体所成的空间. J.Tzimbalario的证明是错误的,因为从[1]中(3.6)式通过计算得到的不是(3.7)式,  相似文献   

11.
With each infinite grid X: ? < x ?1 < x 0 < x 1 < ? we associate the system of trigonometric splines $\{ \mathfrak{T}_j^B \}$ of class C 1(α, β), the linear space $$T^B (X)\mathop = \limits^{def} \{ \tilde u|\tilde u = \sum\limits_j {c_j \mathfrak{T}_j^B } \quad \forall c_j \in \mathbb{R}^1 \} ,$$ and the functionals g (i) ∈ (C 1(α, β))* with the biorthogonality property: $\left\langle {g(i),\mathfrak{T}_j^B } \right\rangle = \delta _{i,j}$ (here $\alpha \mathop = \limits^{def} \lim _{j \to - \infty } x_j ,\quad \beta \mathop = \limits^{def} \lim _{j \to + \infty } x_j$ ). For nested grids $\bar X \subset X$ , we show that the corresponding spaces $T^B (\bar X)$ are embedded in $T^B (X)$ and obtain decomposition and reconstruction formulas for the spline-wavelet expansion $T^B (X) = T^B (\bar X)\dot + W$ derived with the help of the system of functionals indicated above.  相似文献   

12.
Suppose that n is odd and 0=x_0相似文献   

13.
In what follows, $C$ is the space of -periodic continuous functions; P is a seminorm defined on C, shift-invariant, and majorized by the uniform norm; is the mth modulus of continuity of a function f with step h and calculated with respect to P; , ( ), ,
,
Theorem 1. Let . Then
For some values of and seminorms related to best approximations by trigonometric polynomials and splines in the uniform and integral metrics, the inequalities are sharp. Bibliography: 6 titles.  相似文献   

14.
关于各类插值样条函数   总被引:1,自引:0,他引:1  
去年在第二届全国逼近论会议上,浙江大学论文集中提出各种形式的插值样条,给出了收敛阶的估计以及一些渐近展开。但结果不大精确,且每一种都需冗繁的计算。 本文应用我们多次用过的方法,统一处理这些问题。由此看出,我们的方法不仅简洁,而且可普遍适用于许多类似问题。  相似文献   

15.
We give a new proof of the operator version of the Fejér-Riesz Theorem using only ideas from elementary operator theory. As an outcome, an algorithm for computing the outer polynomials that appear in the Fejér-Riesz factorization is obtained. The extremal case, where the outer factorization is also *-outer, is examined in greater detail. The connection to Aglers model theory for families of operators is considered, and a set of families lying between the numerical radius contractions and ordinary contractions is introduced. The methods are also applied to the factorization of multivariate operator-valued trigonometric polynomials, where it is shown that the factorable polynomials are dense, and in particular, strictly positive polynomials are factorable. These results are used to give results about factorization of operator valued polynomials over , in terms of rational functions with fixed denominators.  相似文献   

16.
17.
A quadratic spline is a differentiable piecewise quadratic function. Many problems in the numerical analysis and optimization literature can be reformulated as unconstrained minimizations of quadratic splines. However, only special cases of quadratic splines have been studied in the existing literature and algorithms have been developed on a case-by-case basis. There lacks an analytical representation of a general or even convex quadratic spline. The current paper fills this gap by providing an analytical representation of a general quadratic spline. Furthermore, for a convex quadratic spline, it is shown that the representation can be refined in the neighborhood of a nondegenerate point and a set of nondegenerate minimizers. Based on these characterizations, many existing algorithms for specific convex quadratic splines are also finitely convergent for a general convex quadratic spline. Finally, we study the relationship between the convexity of a quadratic spline function and the monotonicity of the corresponding linear complementarity problem. It is shown that, although both conditions lead to easy solvability of the problem, they are different in general.This project was initiated when the first author was visiting the Technical University of Denmark and Erasmus University. The visit was partially funded by the Danish Natural Science Research Council.  相似文献   

18.
通过例题求解过程的分析,归纳总结三角有理函数积分求解的方法.  相似文献   

19.
基于一元高次方程根与系数的关系,应用对称多项式知识,建立获得一类三角恒等式的新方法,举例说明其应用.  相似文献   

20.
Given a sequence of data \(\{ y_{n} \} _{n \in \mathbb{Z}}\) with polynomial growth and an odd number \(d\), Schoenberg proved that there exists a unique cardinal spline \(f\) of degree \(d\) with polynomial growth such that \(f ( n ) =y_{n}\) for all \(n\in \mathbb{Z}\). In this work, we show that this result also holds if we consider weighted average data \(f\ast h ( n ) =y_{n}\), whenever the average function \(h\) satisfies some light conditions. In particular, the interpolation result is valid if we consider cell-average data \(\int_{n-a}^{n+a}f ( x ) dx=y_{n}\) with \(0< a\leq 1/2\). The case of even degree \(d\) is also studied.  相似文献   

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