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LDPC code designs, constructions, and unification / Juane Li, University of California, Davis, Shu Lin, University of California, Davis, Khaled Abdel-Ghaffar, University of California, Davis, William E. Ryan, Zeta Associates, Colorado, Daniel J. Costello, Jr., University of Notre Dome, Indiana.

By: Contributor(s): Material type: TextTextPublication details: UK Cambridge 2017Description: 247 pages : illustrations ; 26 cmISBN:
  • 9781107175686 (hardback)
Other title:
  • Low-density parity-check code designs, constructions, and unification
Subject(s): DDC classification:
  • 005.717 LI-J 23
LOC classification:
  • QA268 L53 2017
Summary: "Written by leading experts, this self-contained text provides systematic coverage of LDPC codes and their construction techniques, unifying both algebraic- and graph-based approaches into a single theoretical framework (the superposition construction). An algebraic method for constructing protograph LDPC codes is described, and entirely new codes and techniques are presented. These include a new class of LDPC codes with doubly quasi-cyclic structure, as well as algebraic methods for constructing spatially and globally coupled LDPC codes. Authoritative, yet written using accessible language, this text is essential reading for electrical engineers, computer scientists and mathematicians working in communications and information theory"--
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Holdings
Item type Current library Collection Shelving location Call number Status Date due Barcode Item holds
Books Books BITS Pilani Hyderabad 003-007 General Stack (For lending) 005.717 LI-J (Browse shelf(Opens below)) Available 37823
Total holds: 0

Includes bibliographical references and index.

"Written by leading experts, this self-contained text provides systematic coverage of LDPC codes and their construction techniques, unifying both algebraic- and graph-based approaches into a single theoretical framework (the superposition construction). An algebraic method for constructing protograph LDPC codes is described, and entirely new codes and techniques are presented. These include a new class of LDPC codes with doubly quasi-cyclic structure, as well as algebraic methods for constructing spatially and globally coupled LDPC codes. Authoritative, yet written using accessible language, this text is essential reading for electrical engineers, computer scientists and mathematicians working in communications and information theory"--

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