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inria-00201857, version 1

Adaptive geometry compression based on four-point interpolatory subdivision schemes with labels

Hui Zhang 1, Jun-Hai Yong 1, Jean-Claude Paul a1

International Journal of Computer Mathematics 84, 9 (2007) 1353-1365

Abstract: We propose an adaptive geometry compression method with labels based on four-point interpolatory subdivision schemes. It can work on digital curves of arbitrary dimensions. With the geometry compression method, a digital curve is adaptively compressed into several segments with different compression levels. Each segment is a four-point subdivision curve with a subdivision step. Labels are recorded in data compression to facilitate merging the segments in data decompression. We provide high-speed four-point interpolatory subdivision curve generation methods for efficiently decompressing the compressed data. For an arbitrary positive integer k, formulae for the number of resultant control points of a four-point subdivision curve after k subdivision steps are provided. Some formulae for calculating points at the kth subdivision step are also presented. The time complexity of the new approaches is O(n), where n is the number of points in the given digital curve. Examples are provided to illustrate the efficiency of the proposed approaches.

  • a –  INRIA
  • 1:  CAD (CAD LIAMA INRIA Paris - Rocquencourt)
  • Centre de coopération internationale en recherche agronomique pour le développement [CIRAD] – CNRS – Institut national de la recherche agronomique (INRA) – Chinese Academy of Science (CAS) – Institute of Automation, Chinese Academy of Sciences – INRIA
  • Domain : Computer Science/Computer Aided Engineering
 
  • inria-00201857, version 1
  • oai:hal.inria.fr:inria-00201857
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  • Submitted on: Thursday, 3 January 2008 12:28:33
  • Updated on: Thursday, 3 January 2008 12:30:15