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  4. Efficiency of shape-adaptive 2-D transforms for coding of arbitrarily shaped image segments
 
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1995
Zeitschriftenaufsatz
Titel

Efficiency of shape-adaptive 2-D transforms for coding of arbitrarily shaped image segments

Abstract
We introduce a formula to compute an optimum 2-D shape-adaptive Karhunen-Loeve transform (KLT) suitable for coding pels in arbitrarily-shaped image segments. The efficiency of the KLT on a 2-D AR(1) process is used to benchmark two other shape-adaptive transforms described in literature. It is shown that the optimum KLT significantly outperforms the well known shape-adaptive DCT method introduced by Gilge et al. (1989) for coding Segments of arbitrary shape in intraframe coding mode. A statistical transform gain close to the Gilge-method can be achieved with a shape-adaptive DCT algorithm introduced by Sikora and Makai (see Proc. Workshop Image Anal. Image Coding, Berlin, FRG, Nov. 1993) which is implemented with much lower complexity.
Author(s)
Sikora, T.
Bauer, S.
Makai, B.
Zeitschrift
IEEE transactions on circuits and systems for video technology
Thumbnail Image
DOI
10.1109/76.401104
Language
Englisch
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HHI
Tags
  • adaptive signal proce...

  • discrete cosine trans...

  • image coding

  • image segmentation

  • transform coding

  • transforms

  • karhunen-loeve transf...

  • arbitrarily shaped im...

  • shape-adaptive 2-d tr...

  • klt

  • shape-adaptive dct me...

  • intraframe coding

  • statistical transform...

  • shape-adaptive dct al...

  • lower complexity

  • efficiency

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