Biorthogonal multiwavelets on the interval: Cubic Hermite splines

被引:76
|
作者
Dahmen, W [1 ]
Han, B
Jia, RQ
Kunoth, A
机构
[1] Rhein Westfal TH Aachen, Inst Geometrie & Prakt Math, D-52056 Aachen, Germany
[2] Univ Alberta, Dept Mat Sci, Edmonton, AB T6G 2G1, Canada
[3] Princeton Univ, Program Appl & Computat Math, Princeton, NJ 08544 USA
关键词
Hermite cubic splines; biorthogonal multigenerator; multiwavelets; interval; stable completion;
D O I
10.1007/s003659910010
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
Starting with Hermite cubic splines as the primal multigenerator, first a dual multigenerator on R is constructed that consists of continuous functions, has small support, and is exact of order 2. We then derive multiresolution sequences on the interval while retaining the polynomial exactness on the primal and dual sides. This guarantees moment conditions of the corresponding wavelets. The concept of stable completions [CDP] is then used to construct the corresponding primal and dual multiwavelets on the interval as follows. An appropriate variation of what is known as a hierarchical basis in finite element methods is shown to be an initial completion. This is then, in a second step, projected into the desired complements spanned by compactly supported biorthogonal multiwavelets. The masks of all multigenerators and multiwavelets are finite so that decomposition and reconstruction algorithms are simple and efficient. Furthermore, in addition to the Jackson estimates which follow from the erectness, one can also show Bernstein inequalities for the primal and dual multiresolutions. Consequently, sequence norms for the coefficients based on such multiwavelet expansions characterize Sobolev norms parallel to . parallel to(Hs([0,1])) for s is an element of (-0.824926, 2.5). In particular, the multiwavelets form Riesz bases for L-2([0, 1]).
引用
收藏
页码:221 / 259
页数:39
相关论文
共 50 条
  • [1] Biorthogonal Multiwavelets on the Interval: Cubic Hermite Splines
    W. Dahmen
    B. Han
    R.-Q. Jia
    A. Kunoth
    [J]. Constructive Approximation, 2000, 16 : 221 - 259
  • [2] Biorthogonal Cubic Hermite Spline Multiwavelets on the Interval with Complementary Boundary Conditions
    Andreas Schneider
    [J]. Results in Mathematics, 2009, 53 : 407 - 416
  • [3] Biorthogonal Cubic Hermite Spline Multiwavelets on the Interval with Complementary Boundary Conditions
    Schneider, Andreas
    [J]. RESULTS IN MATHEMATICS, 2009, 53 (3-4) : 407 - 416
  • [4] Lifting scheme for biorthogonal multiwavelets originated from hermite splines
    Averbuch, AZ
    Zheludev, VA
    [J]. IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2002, 50 (03) : 487 - 500
  • [5] Biorthogonal cubic Hermite spline multiwavelets on the interval for solving the fractional optimal control problems
    Ashpazzadeh, Elmira
    Lakestani, Mehrdad
    [J]. COMPUTATIONAL METHODS FOR DIFFERENTIAL EQUATIONS, 2016, 4 (02): : 99 - 115
  • [6] Wavelets of Hermite cubic splines on the interval
    Cerna, Dana
    Finek, Vaclav
    Plackova, Gerta
    [J]. APPLICATIONS OF MATHEMATICS IN ENGINEERING AND ECONOMICS (AMEE '12), 2012, 1497 : 138 - 143
  • [7] Biorthogonal multiwavelets on the interval
    Leng, JS
    Cheng, XZ
    Li, JP
    Zhong, SM
    [J]. WAVELET ANALYSIS AND ITS APPLICATIONS, AND ACTIVE MEDIA TECHNOLOGY, VOLS 1 AND 2, 2004, : 241 - 247
  • [8] Wavelet bases of Hermite cubic splines on the interval
    Rong-Qing Jia
    Song-Tao Liu
    [J]. Advances in Computational Mathematics, 2006, 25 : 23 - 39
  • [9] Wavelet bases of Hermite cubic splines on the interval
    Jia, RQ
    Liu, ST
    [J]. ADVANCES IN COMPUTATIONAL MATHEMATICS, 2006, 25 (1-3) : 23 - 39
  • [10] ON MULTIWAVELETS OF HERMITE SPLINES OF ODD DEGREE
    Shumilov, B. M.
    [J]. SIBERIAN ELECTRONIC MATHEMATICAL REPORTS-SIBIRSKIE ELEKTRONNYE MATEMATICHESKIE IZVESTIYA, 2015, 12 : C138 - C147