Showing posts with label CodingTheory. Show all posts
Showing posts with label CodingTheory. Show all posts

Elementary Number Theory, Cryptography and Codes (Universitext)



Elementary Number Theory, Cryptography and Codes (Universitext)
by: M. Welleda Baldoni, Ciro Ciliberto, G.M. Piacentini Cattaneo




Details
* Publisher: Springer
* Number Of Pages: 522
* Publication Date: 2008-12-01
* ISBN-10 / ASIN: 3540691995
* ISBN-13 / EAN: 9783540691990
* Binding: Paperback



Description
In this volume one finds basic techniques from algebra and number theory (e.g. congruences, unique factorization domains, finite fields, quadratic residues, primality tests, continued fractions, etc.) which in recent years have proven to be extremely useful for applications to cryptography and coding theory. Both cryptography and codes have crucial applications in our daily lives, and they are described here, while the complexity problems that arise in implementing the related numerical algorithms are also taken into due account. Cryptography has been developed in great detail, both in its classical and more recent aspects. In particular public key cryptography is extensively discussed, the use of algebraic geometry, specifically of elliptic curves over finite fields, is illustrated, and a final chapter is devoted to quantum cryptography, which is the new frontier of the field. Coding theory is not discussed in full; however a chapter, sufficient for a good introduction to the subject, has been devoted to linear codes. Each chapter ends with several complements and with an extensive list of exercises, the solutions to most of which are included in the last chapter.

Though the book contains advanced material, such as cryptography on elliptic curves, Goppa codes using algebraic curves over finite fields, and the recent AKS polynomial primality test, the authors' objective has been to keep the exposition as self-contained and elementary as possible. Therefore the book will be useful to students and researchers, both in theoretical (e.g. mathematicians) and in applied sciences (e.g. physicists, engineers, computer scientists, etc.) seeking a friendly introduction to the important subjects treated here. The book will also be useful for teachers who intend to give courses on these topics.
Written for: Students and researchers in theoretical (e.g. mathematicians) and in applied sciences (e.g. physicists, engineers, computer scientists, etc.); teachers who intend to give courses on these topics





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Coding Theory: Algorithms, Architectures and Applications

Coding Theory: Algorithms, Architectures and Applications
by: Andre Neubauer




Details

* Publisher: Wiley-Interscience
* Number Of Pages: 362
* Publication Date: 2007-12-04
* ISBN-10 / ASIN: 0470028610
* ISBN-13 / EAN: 9780470028612
* Binding: Hardcover



Description
One of the most important key technologies for digital communication systems as well as storage media is coding theory. It provides a means to transmit information across time and space over noisy and unreliable communication channels.



Coding Theory: Algorithms, Architectures and Applications provides a concise overview of channel coding theory and practice, as well as the accompanying signal processing architectures. The book is unique in presenting algorithms, architectures, and applications of coding theory in a unified framework. It covers the basics of coding theory before moving on to discuss algebraic linear block and cyclic codes, turbo codes and low density parity check codes and space-time codes. Coding Theory provides algorithms and architectures used for implementing coding and decoding strategies as well as coding schemes used in practice especially in communication systems.



Feature of the book include:





* Unique presentation-like style for summarising main aspects
* Practical issues for implementation of coding techniques
* Sound theoretical approach to practical, relevant coding methodologies
* Covers standard coding schemes such as block and convolutional codes, coding schemes such as Turbo and LDPC codes, and space time codes currently in research, all covered in a common framework with respect to their applications.





This book is ideal for postgraduate and undergraduate students of communication and information engineering, as well as computer science students. It will also be of use to engineers working in the industry who want to know more about the theoretical basics of coding theory and their application in currently relevant communication systems

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