Algebraic Geometry Modeling In Information Theory


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Algebraic Geometry Modeling in Information Theory


Algebraic Geometry Modeling in Information Theory

Author: Edgar Martinez-Moro

language: en

Publisher: World Scientific

Release Date: 2013


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Algebraic & geometry methods have constituted a basic background and tool for people working on classic block coding theory and cryptography. Nowadays, new paradigms on coding theory and cryptography have arisen such as: Network coding, S-Boxes, APN Functions, Steganography and decoding by linear programming. Again understanding the underlying procedure and symmetry of these topics needs a whole bunch of non trivial knowledge of algebra and geometry that will be used to both, evaluate those methods and search for new codes and cryptographic applications. This book shows those methods in a self-contained form.

Algebraic Geometry Modeling in Information Theory


Algebraic Geometry Modeling in Information Theory

Author: Edgar Martinez-Moro

language: en

Publisher: World Scientific

Release Date: 2013


DOWNLOAD





Algebraic & geometry methods have constituted a basic background and tool for people working on classic block coding theory and cryptography. Nowadays, new paradigms on coding theory and cryptography have arisen such as: Network coding, S-Boxes, APN Functions, Steganography and decoding by linear programming. Again understanding the underlying procedure and symmetry of these topics needs a whole bunch of non trivial knowledge of algebra and geometry that will be used to both, evaluate those methods and search for new codes and cryptographic applications. This book shows those methods in a self-contained form.

Stochastic Models, Information Theory, and Lie Groups, Volume 1


Stochastic Models, Information Theory, and Lie Groups, Volume 1

Author: Gregory S. Chirikjian

language: en

Publisher: Springer Science & Business Media

Release Date: 2009-09-02


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This unique two-volume set presents the subjects of stochastic processes, information theory, and Lie groups in a unified setting, thereby building bridges between fields that are rarely studied by the same people. Unlike the many excellent formal treatments available for each of these subjects individually, the emphasis in both of these volumes is on the use of stochastic, geometric, and group-theoretic concepts in the modeling of physical phenomena. Stochastic Models, Information Theory, and Lie Groups will be of interest to advanced undergraduate and graduate students, researchers, and practitioners working in applied mathematics, the physical sciences, and engineering. Extensive exercises and motivating examples make the work suitable as a textbook for use in courses that emphasize applied stochastic processes or differential geometry.