skip to main content
poster

Poster: on the capacity delay error tradeoff of source coding

Authors Info & Claims
Published:15 September 2011Publication History
Skip Abstract Section

Abstract

In this note we present a statistical, non-equilibrium envelope model that, based on Legendre transforms, characterizes source coders and transmission channels by their capacity-delay-error-tradeoff. The model is proven to have the desirable property of additivity, that allows analyzing coders and channels separately. We present an example for Huffman coding. More can be found in the report [2].

References

  1. F. Ciucu, A. Burchard, and J. Liebeherr. Scaling properties of statistical end-to-end bounds in the network calculus. Trans. Netw., 14(6):2300--2312, 2006. Google ScholarGoogle ScholarDigital LibraryDigital Library
  2. R. Lübben and M. Fidler. Non-equilibrium information envelopes and the capacity-delay-error-tradoff of source coding. Technical report, arXiv, July 2011.Google ScholarGoogle Scholar

Index Terms

  1. Poster: on the capacity delay error tradeoff of source coding

        Recommendations

        Comments

        Login options

        Check if you have access through your login credentials or your institution to get full access on this article.

        Sign in

        Full Access

        • Published in

          cover image ACM SIGMETRICS Performance Evaluation Review
          ACM SIGMETRICS Performance Evaluation Review  Volume 39, Issue 2
          Special Issue on IFIP PERFORMANCE 2011- 29th International Symposium on Computer Performance, Modeling, Measurement and Evaluation
          September 2011
          75 pages
          ISSN:0163-5999
          DOI:10.1145/2034832
          Issue’s Table of Contents

          Copyright © 2011 Authors

          Publisher

          Association for Computing Machinery

          New York, NY, United States

          Publication History

          • Published: 15 September 2011

          Check for updates

          Qualifiers

          • poster

        PDF Format

        View or Download as a PDF file.

        PDF

        eReader

        View online with eReader.

        eReader