Algebra for secure and reliable communication modeling : CIMPA Research School and Conference, Algebra for Secure and Reliable Communication Modeling, October 1-13, 2012, Morelia, state of Michoacán, Mexico

書誌事項

Algebra for secure and reliable communication modeling : CIMPA Research School and Conference, Algebra for Secure and Reliable Communication Modeling, October 1-13, 2012, Morelia, state of Michoacán, Mexico

Mustapha Lahyane, Edgar Martínez-Moro, editors

(Contemporary mathematics, 642)

American Mathematical Society, c2015

タイトル別名

ASReCoM

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注記

Includes bibliographical references

内容説明・目次

内容説明

This volume contains the proceedings of the CIMPA Research School and Conference on Algebra for Secure and Reliable Communication Modeling, held from October 1-13, 2012, in Morelia, State of Michoacan, Mexico. The papers cover several aspects of the theory of coding theory and are gathered into three categories: general theory of linear codes, algebraic geometry and coding theory, and constacyclic codes over rings. The aim of this volume is to fill the gap between the theoretical part of algebraic geometry and the applications to problem solving and computational modeling in engineering, signal processing and information theory. This book is published in cooperation with Real Sociedad Matematica Espanola (RSME).

目次

Some applications of the Fourier transform in algebraic coding theory by J. A. Wood A semigroup approach to complete decoding by I. Marquez-Corbella and E. Martinez-Moro Grobner bases methods in coding theory by C. Carvalho An introduction to algebraic geometry codes by C. Munuera and W. Olaya-Leon Evaluation codes and plane valuations by J. I. Farran and C. Galindo Vector bundles with a view toward coding theory by B. L. De La Rosa Navarro, M. Lahyane, and E. Previato Algebraic-geometric codes from rational surfaces by B. L. De La Rosa Navarro and M. Lahyane Equivalence classes and structures of constacyclic codes over finite fields by B. Chen and H. Q. Dinh On repeated-root constacyclic codes of prime power length over polynomial residue rings by H. Q. Dinh

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