• DocumentCode
    1025646
  • Title

    Quantization as Histogram Segmentation: Optimal Scalar Quantizer Design in Network Systems

  • Author

    Muresan, Dan ; Effros, Michelle

  • Volume
    54
  • Issue
    1
  • fYear
    2008
  • Firstpage
    344
  • Lastpage
    366
  • Abstract
    An algorithm for scalar quantizer design on discrete-alphabet sources is proposed. The proposed algorithm can be used to design fixed-rate and entropy-constrained conventional scalar quantizers, multiresolution scalar quantizers, multiple description scalar quantizers, and Wyner-Ziv scalar quantizers. The algorithm guarantees globally optimal solutions for conventional fixed-rate scalar quantizers and entropy-constrained scalar quantizers. For the other coding scenarios, the algorithm yields the best code among all codes that meet a given convexity constraint. In all cases, the algorithm run-time is polynomial in the size of the source alphabet. The algorithm derivation arises from a demonstration of the connection between scalar quantization, histogram segmentation, and the shortest path problem in a certain directed acyclic graph.
  • Keywords
    directed graphs; encoding; quantisation (signal); statistical analysis; Wyner-Ziv scalar quantizers; code design algorithm; directed acyclic graph; discrete-alphabet sources; entropy-constrained conventional scalar quantizers; fixed-rate scalar quantizers; histogram segmentation; multiple description scalar quantizers; multiresolution scalar quantizers; network systems; optimal scalar quantizer design; shortest path problem; Algorithm design and analysis; Data compression; Decoding; Distortion measurement; Histograms; Polynomials; Quantization; Runtime; Shortest path problem; Optimal design; Wyner–Ziv; multiple descriptions; multiresolution; scalar quantizer; successive refinement;
  • fLanguage
    English
  • Journal_Title
    Information Theory, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9448
  • Type

    jour

  • DOI
    10.1109/TIT.2007.911170
  • Filename
    4418493