LEADER 00843cam1-2200241 --450 001 9910313358603321 005 20190401121149.0 100 $a20190401d1946----kmuy0itay50 ba 101 0 $aita 102 $aIT 105 $a 001yy 200 1 $aProblemi ed esercizi di analisi matematica$eRisolti o avviati alla soluzione preceduti da quadri sinottici illustrativi$fGiuseppe Burnengo 210 $aTorino$cSei$d1946 215 $av.$d23 cm 463 \1$10019910313358203321$12001 $a<<2.: >>Analisi algebrica e infintesimale 463 \1$10019910313358303321$12001 $a<<1.: >>Geometria analitica e proiettiva 700 1$aBurnengo,$bGiuseppe$0763302 801 0$aIT$bUNINA$gREICAT$2UNIMARC 901 $aBK 912 $a9910313358603321 959 $aDINTR 996 $aProblemi ed esercizi di analisi matematica$91548466 997 $aUNINA LEADER 05518nam 2200709 450 001 9910131608603321 005 20210208205646.0 010 $a1-119-10632-X 010 $a1-119-10631-1 010 $a1-119-10633-8 035 $a(CKB)3710000000463120 035 $a(EBL)2147106 035 $a(SSID)ssj0001575217 035 $a(PQKBManifestationID)16238607 035 $a(PQKBTitleCode)TC0001575217 035 $a(PQKBWorkID)14849350 035 $a(PQKB)11172878 035 $a(MiAaPQ)EBC4180213 035 $a(MiAaPQ)EBC2147106 035 $a(PPN)254411622 035 $a(EXLCZ)993710000000463120 100 $a20150908h20152015 uy| 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aTrellis and turbo coding $eiterative and graph-based error control coding /$fChristian B. Schlegel, Lance C. Pe?rez 205 $a2nd ed. 210 1$aPiscataway, NJ :$cIEEE Press ;$aHoboken, New Jersey :$cWiley,$d[2015] 210 4$d©2015 215 $a1 online resource (521 p.) 225 1 $aIEEE series on digital & mobile communication 300 $aDescription based upon print version of record. 311 $a1-118-08316-4 320 $aIncludes bibliographical references and index. 327 $aTRELLIS AND TURBO CODING; Contents; 1 Introduction; 1.1 Modern Digital Communications; 1.2 The Rise of Digital Communications; 1.3 Communication Systems; 1.4 Error Control Coding; 1.5 Bandwidth, Power, and Complexity; 1.6 A Brief History-The Drive Towards Capacity; 2 Communications Basics; 2.1 The Probabilistic Viewpoint; 2.2 Vector Communication Channels; 2.3 Optimum Receivers; 2.4 Matched Filters; 2.5 Message Sequences; 2.6 The Complex Equivalent Baseband Model; 2.7 Spectral Behavior; 2.8 Advanced Modulation Methods; 2.8.1 OFDM; 2.8.2 Multiple Antenna Channels (MIMO Channels) 327 $a2.9 A Communications System Case Study2.10 Appendix 2.A; 3 Trellis-Coded Modulation; 3.1 An Introductory Example; 3.2 Construction of Codes; 3.3 Lattices; 3.4 Lattice Formulation of Trellis Codes; 3.5 Rotational Invariance; 3.6 V.fast; 3.7 The IEEE 802.3an Standard; 3.8 Historical Notes; 4 Trellis Representations; 4.1 Preliminaries; 4.2 The Parity-Check Matrix; 4.3 Parity-Check Trellis Representations; 4.4 Convolutional Codes and Their Trellis; 4.5 Minimal Trellises; 4.6 Minimum-Span Generator Matrices; 4.7 Systematic Construction of the PC-Trellis; 4.8 Tail-Biting Trellises 327 $a4.9 The Minimal Trellis of Convolutional Codes4.10 Fundamental Theorems from Basic Algebra; 4.11 Systematic Encoders; 4.12 Maximum Free-Distance Convolutional Codes; 4.13 The Squaring Construction and the Trellis of Lattices; 4.14 The Construction of Reed-Muller Codes; 4.15 A Decoding Example; 4.16 Polar Codes and Their Relationship to RM Codes; Appendix 4.A; 5 Trellis and Tree Decoding; 5.1 Background and Introduction; 5.2 Tree Decoders; 5.3 The Stack Algorithm; 5.4 The Fano Algorithm; 5.5 The M-Algorithm; 5.6 Maximum Likelihood Decoding; 5.7 A Posteriori Probability Symbol Decoding 327 $a5.8 Log-APP and Approximations5.9 Error Analysis and Distance Spectrum; 5.10 Random Coding Analysis of Optimal Decoding; 5.11 Random Coding Analysis of Sequential Decoding; 5.12 Some Final Remarks; 6 Low-Density Parity-Check Codes; 6.1 Introduction; 6.2 LDPC Codes and Graphs; 6.3 LDPC Decoding via Message Passing; 6.4 Analysis Techniques; 6.4.1 (Error) Probability Evolution for Binary Erasure Channels; 6.4.2 Error Mechanism of LDPCs on BECs; 6.4.3 Binary Symmetric Channels and the Gallager Algorithms; 6.4.4 The AWGN Channel; 6.5 Code Families and Construction 327 $a6.5.1 Constructions with Permutation Matrices6.5.2 Cycle Reduction Design; 6.5.3 RS-based Construction; 6.5.4 Repeat-Accumulate Codes; 6.6 Encoding of LDPC Codes; 6.6.1 Triangular LDPC Codes; 6.6.2 Specialized LDPC Codes; 6.6.3 Approximate Triangularization; Appendix 6.A; 7 Error Floors; 7.1 The Error Floor Problem; 7.2 Dynamics of the Absorption Sets; 7.3 Code Design for Low Error Floors; 7.4 Impact of the Decoding Algorithm; 7.5 Importance Sampling (IS); 7.6 Computing Error Rates via Importance Sampling; 8 Turbo Coding: Basic Principles; 8.1 Introduction 327 $a8.2 Parallel Concatenated Convolutional Codes 330 $aThis new edition has been extensively revised to reflect the progress in error control coding over the past few years. Over 60% of the material has been completely reworked, and 30% of the material is original.
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