A fast algorithm for orthogonalizing polynomials on an arbitrarily shaped region (revised version)

被引:3
|
作者
Philips, W
机构
[1] Dept. of Electronics and Info. Syst., University of Gent, B9000 Gent
关键词
segmented image-coding; orthogonalizing polynomials; PRO; fast algorithm;
D O I
10.1023/A:1008208408359
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Segmented image coding segments an image into non-rectangular regions and approximates the texture in each region by a weighted sum of orthonormal base functions. These orthonormal base functions, which are region-specific, used to be generated by the Gram-Schmidt (GS) algorithm, which is unfortunately very time-consuming. This paper presents the polynomial recursive orthogonalization (PRO) algorithm which generates the same orthonormal base functions as GS, but which is faster than GS because it is based on a recurrence which has fewer terms than the corresponding GS equation. The paper presents theoretical and experimental results which show that PRO is two to three times faster in practice (depending on the number of computed base functions).
引用
下载
收藏
页码:409 / 421
页数:13
相关论文
共 50 条
  • [21] A novel motion estimation algorithm for arbitrarily shaped video coding
    Chia-Woo, A
    Zeng, B
    Au, OC
    IEEE INTERNATIONAL CONFERENCE ON MULTIMEDIA AND EXPO, VOL I AND II, PROCEEDINGS, 2002, : 649 - 652
  • [22] A novel and robust contact detection algorithm for arbitrarily shaped blocks
    Mousakhani, Mojtaba
    Thoeni, Klaus
    Fityus, Stephen
    Giacomini, Anna
    COMPUTERS AND GEOTECHNICS, 2021, 140
  • [23] Revised version of PRAL. The projected range algorithm
    Ashworth, D.G.
    Bowyer, M.D.J.
    Oven, R.
    Journal of Physics D: Applied Physics, 1991, 24 (08): : 1376 - 1380
  • [24] Fast adhesion calculation for collisions between arbitrarily shaped particles and a wall
    Braschke, Kamil Oskar
    Zoller, Julian
    Freese, Florian
    Dittler, Achim
    Janoske, Uwe
    POWDER TECHNOLOGY, 2022, 405
  • [25] A fast analysis of electromagnetic scattering by arbitrarily shaped homogeneous dielectric objects
    Nie, XC
    Li, LW
    Yuan, N
    Yeo, TS
    Gan, YB
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2003, 38 (01) : 30 - 35
  • [26] hp-VERSION DISCONTINUOUS GALERKIN METHODS ON ESSENTIALLY ARBITRARILY-SHAPED ELEMENTS
    Cangiani, Andrea
    Dong, Zhaonan
    Georgoulis, Emmanuil H.
    MATHEMATICS OF COMPUTATION, 2022, 91 (333) : 1 - 35
  • [27] Motion compensated subband video coding with arbitrarily shaped region adaptivity
    Kwon, OJ
    Choi, S
    ETRI JOURNAL, 2001, 23 (04) : 190 - 198
  • [28] A multiple hierarchical clustering ensemble algorithm to recognize clusters arbitrarily shaped
    Sun, Yuqin
    Wang, Songlei
    Huang, Dongmei
    Sun, Yuan
    Hu, Anduo
    Sun, Jinzhong
    INTELLIGENT DATA ANALYSIS, 2022, 26 (05) : 1211 - 1228
  • [29] Automatic triangular mesh generation algorithm for arbitrarily shaped planar regions
    Zhang, Xiuzhong
    Jin, Sheng
    Jisuan Jiegou Lixue Jiqi Yingyong/Journal of Computational Structural Mechanics and Applications, 2000, 17 (03): : 313 - 319
  • [30] An algorithm to treat flows bounded by arbitrarily shaped surfaces with Cartesian meshes
    Tremblay, F
    Friedrich, R
    NEW RESULTS IN NUMERICAL AND EXPERIMENTAL FLUID MECHANICS III, 2002, 77 : 289 - 296