Modern digital and analog communication systems:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York ; Oxford
Oxford University Press
2010
|
Ausgabe: | International fourth edition |
Schriftenreihe: | The Oxford series in electrical and computer engineering
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Prev. ed.: 1998. - Includes bibliographical references and index |
Beschreibung: | XXI, 903 Seiten Illustrationen 26 cm |
ISBN: | 9780195384932 |
Internformat
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Datensatz im Suchindex
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adam_text | Titel: Modern digital and analog communication systems
Autor: Lathi, Bhagawandas P
Jahr: 2010
CONTENTS
PREFACE
XVII
1
INTRODUCTION i
1.1 COMMUNICATION SYSTEMS 1
1.2 ANALOG AND DIGITAL MESSAGES 4
1.2.1 Noise Immunity of Digital Signals 4
1.2.2 Viability of Distortionless Regenerative Repeaters 5
1.2.3 Analog-to-Digital (A/D) Conversion 6
1.2.4 Pulse-Coded Modulation-A Digital Representation 7
1.3 CHANNEL EFFECT, SIGNAL-TO-NOISE RATIO, AND CAPACITY 9
1.3.1 Signal Bandwidth and Power 9
1.3.2 Channel Capacity and Data Rate 10
1.4 MODULATION AND DETECTION 11
1.4.1 Ease of Radiation/Transmission 11
1.4.2 Simultaneous Transmission of Multiple
Signals-Multiplexing 12
1.4.3 Demodulation 13
1.5 DIGITAL SOURCE CODING AND ERROR
CORRECTION CODING 13
1.6 A BRIEF HISTORICAL REVIEW OF MODERN
TELECOMMUNICATIONS 15
2
3
SIGNALS AND SIGNAL SPACE 20
2.1 SIZE OF A SIGNAL 20
2.2 CLASSIFICATION OF SIGNALS 22
2.2.1 Continuous Time and Discrete Time Signals 23
2.2.2 Analog and Digital Signals 23
2.2.3 Periodic and Aperiodic Signals 24
2.2.4 Energy and Power Signals 25
2.2.5 Deterministic and Random Signals 25
2.3 UNIT IMPULSE SIGNAL 26
2.4 SIGNALS VERSUS VECTORS 28
2.4.1 Component of a Vector along Another Vector 28
2.4.2 Decomposition of a Signal and Signal Components 30
2.4.3 Complex Signal Space and Orthogonality 32
2.4.4 Energy of the Sum of Orthogonal Signals 34
2.5 CORRELATION OF SIGNALS 34
2.5.1 Correlation Functions 35
2.5.2 Autocorrelation Function 36
2.6 ORTHOGONAL SIGNAL SET 36
2.6.1 Orthogonal Vector Space 36
2.6.2 Orthogonal Signal Space 38
2.6.3 Parseval s Theorem 39
2.7 THE EXPONENTIAL FOURIER SERIES 39
2.8 MATLAB EXERCISES 46
ANALYSIS AND TRANSMISSION
OF SIGNALS 62
3.1 APERIODIC SIGNAL REPRESENTATION BY FOURIER INTEGRAL 62
3.2 TRANSFORMS OF SOME USEFUL FUNCTIONS 69
3.3 SOME PROPERTIES OF THE FOURIER TRANSFORM 75
3.3.1 Time-Frequency Duality 76
3.3.2 Duality Property 77
3.3.3 Time-Scaling Property 79
3.3.4 Time-Shifting Property 81
3.3.5 Frequency-Shifting Property 83
3.3.6 Convolution Theorem 87
3.3.7 Time Differentiation and Time Integration 88
3.4 SIGNAL TRANSMISSION THROUGH A LINEAR SYSTEM 90
3.4.1 Signal Distortion during Transmission 92
3.4.2 Distortionless Transmission 92
3.5 IDEAL VERSUS PRACTICAL FILTERS 95
4
5
3.6 SIGNAL DISTORTION OVER A COMMUNICATION
CHANNEL 97
3.6.1 Linear Distortion 97
3.6.2 Distortion Caused by Channel Nonlinearities 99
3.6.3 Distortion Caused by Multipath Effects 101
3.6.4 Fading Channels 103
3.7 SIGNAL ENERGY AND ENERGY SPECTRAL DENSITY 103
3.7.1 Parseval s Theorem 103
3.7.2 Energy Spectral Density (ESD) 104
3.7.3 Essential Bandwidth of a Signal 105
3.7.4 Energy of Modulated Signals 108
3.7.5 Time Autocorrelation Function and the Energy
Spectral Density 109
3.8 SIGNAL POWER AND POWER SPECTRAL DENSITY 111
3.8.1 Power Spectral Density (PSD) 111
3.8.2 Time Autocorrelation Function of Power Signals 113
3.8.3 Input and Output Power Spectral Densities 117
3.8.4 PSD of Modulated Signals 118
3.9 NUMERICAL COMPUTATION OF FOURIER TRANSFORM:
THE DFT 118
3.10 MATLAB EXERCISES 123
AMPLITUDE MODULATIONS
AND DEMODULATIONS no
4.1 BASEBAND VERSUS CARRIER COMMUNICATIONS 140
4.2 DOUBLE-SIDEBAND AMPLITUDE MODULATION 142
4.3 AMPLITUDE MODULATION (AM) 151
4.4 BANDWIDTH-EFFICIENT AMPLITUDE MODULATIONS 158
4.5 AMPLITUDE MODULATIONS: VESTIGIAL SIDEBAND (VSB) 167
4.6 LOCAL CARRIER SYNCHRONIZATION 170
4.7 FREQUENCY DIVISION MULTIPLEXING (FDM) 172
4.8 PHASE-LOCKED LOOP AND SOME APPLICATIONS 173
4.9 MATLAB EXERCISES 181
ANGLE MODULATION
AND DEMODULATION 202
5.1 NONLINEAR MODULATION 202
5.2 BANDWIDTH OF ANGLE-MODULATED WAVES 209
6
5.3 GENERATING FM WAVES 222
5.4 DEMODULATION OF FM SIGNALS 231
5.5 EFFECTS OF NONLINEAR DISTORTION AND
INTERFERENCE 234
5.6 SUPERHETERODYNE ANALOG AM/FM RECEIVERS 239
5.7 FM BROADCASTING SYSTEM 241
5.8 MATLAB EXERCISES 242
SAMPLING AND ANALOG-TO-DIGITAL
CONVERSION 25i
6.1 SAMPLING THEOREM 251
6.1.1 Signal Reconstruction from Uniform Samples 253
6.1.2 Practical Issues in Signal Sampling and
Reconstruction 258
6.1.3 Maximum Information Rate: Two Pieces of
Information per Second per Hertz 262
6.1.4 Nonideal Practical Sampling Analysis 263
6.1.5 Some Applications of the Sampling Theorem 267
6.2 PULSE CODE MODULATION (PCM) 268
6.2.1 Advantages of Digital Communication 270
6.2.2 Quantizing 271
6.2.3 Principle of Progressive Taxation: Nonuniform
Quantization 274
6.2.4 Transmission Bandwidth and the Output SNR 278
6.3 DIGITAL TELEPHONY: PCM IN Tl CARRIER SYSTEMS 281
6.4 DIGITAL MULTIPLEXING 285
6.4.1 Signal Format 285
6.4.2 Asynchronous Channels and Bit Stuffing 287
6.4.3 Plesiochronous (almost Synchronous) Digital
Hierarchy 288
6.5 DIFFERENTIAL PULSE CODE MODULATION (DPCM) 290
6.6 ADAPTIVE DIFFERENTIAL PCM (ADPCM) 294
6.7 DELTA MODULATION 295
6.8 VOCODERS AND VIDEO COMPRESSION 300
6.8.1 Linear Prediction Coding Vocoders 301
6.9 MATLAB EXERCISES 310
7
PRINCIPLES OF DIGITAL DATA
TRANSMISSION 326
7.1 DIGITAL COMMUNICATION SYSTEMS 326
7.1.1 Source 326
7.1.2 Line Coder 327
7.1.3 Multiplexer 328
7.1.4 Regenerative Repeater 328
7.2 LINE CODING 329
7.2.1 PSD of Various Line Codes 330
7.2.2 Polar Signaling 334
7.2.3 Constructing a DC Null in PSD by Pulse
Shaping 336
7.2.4 On-Off Signaling 337
7.2.5 Bipolar Signaling 339
7.3 PULSE SHAPING 343
7.3.1 Intersymbol Interferences (131) and Effect 343
7.3.2 Nyquist s First Criterion for Zero ISI 344
7.3.3 Controlled ISI or Partial Response Signaling 350
7.3.4 Example of a Duobinary Pulse 351
7.3.5 Pulse Relationship between Zero-ISI, Duobinary, and
Modified Duobinary 352
7.3.6 Detection of Duobinary Signaling and Differential
Encoding 353
7.3.7 Pulse Generation 355
7.4 SCRAMBLING 355
7.5 DIGITAL RECEIVERS AND REGENERATIVE REPEATERS 358
7.5.1 Equalizers 359
7.5.2 Timing Extraction 363
7.5.3 Detection Error 365
7.6 EYE DIAGRAMS: AN IMPORTANT TOOL 366
7.7 PAM: /Vt-ARY BASEBAND SIGNALING FOR HIGHER
DATA RATE 369
7.8 DIGITAL CARRIER SYSTEMS 372
7.8.1 Basic Binary Carrier Modulations 372
7.8.2 PSD of Digital Carrier Modulation 374
7.8.3 Connections between Analog and Digital Carrier
Modulations 376
7.8.4 Demodulation 377
7.9 A4-ARY DIGITAL CARRIER MODULATION 380
7.10 MATLAB EXERCISES 386
8
9
10
FUNDAMENTALS OF PROBABILITY
THEORY 393
8.1 CONCEPT OF PROBABILITY 393
8.2 RANDOM VARIABLES 408
8.3 STATISTICAL AVERAGES (MEANS) 427
8.4 CORRELATION 436
8.5 LINEAR MEAN SQUARE ESTIMATION 440
8.6 SUM OF RANDOM VARIABLES 443
8.7 CENTRAL LIMIT THEOREM 446
RANDOM PROCESSES AND SPECTRAL
ANALYSIS 456
9.1 FROM RANDOM VARIABLE TO RANDOM PROCESS 456
9.2 CLASSIFICATION OF RANDOM PROCESSES 461
9.3 POWER SPECTRAL DENSITY 465
9.4 MULTIPLE RANDOM PROCESSES 479
9.5 TRANSMISSION OF RANDOM PROCESSES THROUGH LINEAR
SYSTEMS 480
9.6 APPLICATION: OPTIMUM FILTERING (WIENER-HOPF FILTER) 483
9.7 APPLICATION: PERFORMANCE ANALYSIS OF BASEBAND ANALOG
SYSTEMS 486
9.8 APPLICATION: OPTIMUM PREEMPHASIS-DEEMPHASIS
SYSTEMS 488
9.9 BANDPASS RANDOM PROCESSES 491
PERFORMANCE ANALYSIS OF DIGITAL
COMMUNICATION SYSTEMS 506
10.1 OPTIMUM LINEAR DETECTOR FOR BINARY POLAR
SIGNALING 506
10.1.1 Binary Threshold Detection 507
10.1.2 Optimum Receiver Filter-Matched Filter 508
10.2 GENERAL BINARY SIGNALING 512
10.2.1 Optimum Linear Receiver Analysis 512
10.2.2 Performance Analysis of General Binary Systems 516
11
10.3 COHERENT RECEIVERS FOR DIGITAL CARRIER
MODULATIONS 520
10.4 SIGNAL SPACE ANALYSIS OF OPTIMUM DETECTION 525
10.4.1 Geometrical Signal Space 525
10.4.2 Signal Space and Basis Signals 527
10.5 VECTOR DECOMPOSITION OF WHITE NOISE RANDOM
PROCESSES 530
10.5.1 Determining Basis Functions for a Random Process 530
10.5.2 Geometrical Representation of White Noise Processes
531
10.5.3 White Gaussian Noise 533
10.5.4 Properties of Gaussian Random Process 534
10.6 OPTIMUM RECEIVER FOR WHITE GAUSSIAN NOISE
CHANNELS 536
10.6.1 Geometric Representations 536
10.6.2 Dimensionality of the Detection Signal Space 538
10.6.3 (Simplified) Signal Space and Decision Procedure 541
10.6.4 Decision Regions and Error Probability 545
10.6.5 Multiamplitude Signaling (PAM) 551
10.6.6 M-ary QAM Analysis 554
10.7 GENERAL EXPRESSION FOR ERROR PROBABILITY OF OPTIMUM
RECEIVERS 561
10.8 EQUIVALENT SIGNAL SETS 569
10.8.1 Minimum Energy Signal Set 572
10.8.2 Simplex Signal Set 575
10.9 NONWHITE (COLORED) CHANNEL NOISE 577
10.10 OTHER USEFUL PERFORMANCE CRITERIA 578
10.11 NONCOHERENT DETECTION 581
10.12 MATLAB EXERCISES 589
SPREAD SPECTRUM
COMMUNICATIONS 614
11.1 FREQUENCY HOPPING SPREAD
SPECTRUM (FHSS) SYSTEMS 614
11.2 MULTIPLE FHSS USER SYSTEMS AND PERFORMANCE 618
11.3 APPLICATIONS OF FHSS 621
11.4 DIRECT SEQUENCE SPREAD SPECTRUM 624
11.5 RESILIENT FEATURES OF DSSS 628
11.6 CODE DIVISION MULTIPLE-ACCESS (CDMA) OF DSSS 630
12
13
11.7 MULTIUSER DETECTION (MUD) 637
11.8 MODERN PRACTICAL DSSS CDMA SYSTEMS 643
11.8.1 CDMA in Cellular Phone Networks 643
11.8.2 CDMA in the Global Positioning System (GPS) 647
11.8.3 IEEE 802.11 b Standard for Wireless LAN 649
11.9 MATLAB EXERCISES 651
DIGITAL COMMUNICATIONS UNDER
LINEARLY DISTORTIVE CHANNELS 666
12.1 LINEAR DISTORTIONS OF WIRELESS MULTIPATH CHANNELS 666
12.2 RECEIVER CHANNEL EQUALIZATION 670
12.2.1 Antialiasing Filter vs. Matched Filter 670
12.2.2 Maximum Likelihood Sequence Estimation (MLSE) 673
12.3 LINEAR T-SPACED EQUALIZATION (TSE) 676
12.3.1 Zero-Forcing TSE 677
12.3.2 TSE Design Based on MMSE 679
12.4 LINEAR FRACTIONALLY SPACED EQUALIZERS (FSE) 684
1 2.4.1 The Single-Input-Multiple-Output (SIMO) Model 684
12.4.2 FSE Designs 686
12.5 CHANNEL ESTIMATION 688
12.6 DECISION FEEDBACK EQUALIZER 689
12.7 OFDM (MULTICARRIER) COMMUNICATIONS 692
12.7.1 Principles of OFDM 692
12.7.2 OFDM Channel Noise 698
12.7.3 Zero-Padded OFDM 700
1 2.7.4 Cyclic Prefix Redundancy in OFDM 701
12.7.5 OFDM Equalization 701
12.8 DISCRETE MULTITONE (DMT) MODULATIONS 702
12.9 REAL-LIFE APPLICATIONS OF OFDM AND DMT 707
12.10 BLIND EQUALIZATION AND IDENTIFICATION 711
12.11 TIME-VARYING CHANNEL DISTORTIONS DUE TO MOBILITY 712
12.12 MATLAB EXERCISES 715
INTRODUCTION TO INFORMATION
THEORY 734
13.1 MEASURE OF INFORMATION 734
13.2 SOURCE ENCODING 739
14
13.3 ERROR-FREE COMMUNICATION OVER A NOISY CHANNEL 745
13.4 CHANNEL CAPACITY OF A DISCRETE MEMORYLESS
CHANNEL 748
13.5 CHANNEL CAPACITY OF A CONTINUOUS MEMORYLESS
CHANNEL 756
13.6 PRACTICAL COMMUNICATION SYSTEMS IN LIGHT OF SHANNON S
EQUATION 773
13.7 FREQUENCY-SELECTIVE CHANNEL CAPACITY 776
13.8 MULTIPLE-INPUT-MULTIPLE-OUTPUT COMMUNICATION
SYSTEMS 781
13.8.1 Capacity of MIMO Channels 781
13.8.2 Transmitter without Channel Knowledge 783
13.8.3 Transmitter with Channel Knowledge 785
13.9 MATLAB EXERCISES 789
ERROR CORRECTING CODES 802
14.1 OVERVIEW 802
14.2 REDUNDANCY FOR ERROR CORRECTION 803
14.3 LINEAR BLOCK CODES 806
14.4 CYCLIC CODES 813
14.5 THE EFFECTS OF ERROR CORRECTION 822
14.6 CONVOLUTIONAL CODES 827
14.6.1 Convolutional Encoder 827
14.6.2 Decoding Convolutional Codes 831
14.7 TRELLIS DIAGRAM OF BLOCK CODES 837
14.8 CODE COMBINING AND INTERLEAVING 839
14.9 SOFT DECODING 841
14.10 SOFT-OUTPUT VITERBI ALGORITHM (SOVA) 844
14.11 TURBO CODES 846
14.12 LOW-DENSITY PARITY CHECK (LDPC) CODES 854
14.13 MATLAB EXERCISES 861
A ORTHOGONALITY OF SOME SIGNAL SETS 873
A. 1 ORTHOGONALITY OF THE TRIGONOMETRIC AND
EXPONENTIAL SIGNAL SET 873
A.2 ORTHOGONALITY OF THE EXPONENTIAL
SIGNAL SET 874
B CAUCHY-SCHWARZ INEQUALITY 875
C GRAM-SCHMIDT ORTHOGONALIZATION OF A
VECTOR SET 877
D BASIC MATRIX PROPERTIES
AND OPERATIONS sso
D.I NOTATION 880
D.2 MATRIX PRODUCT AND PROPERTIES 881
D.3 IDENTITY AND DIAGONAL MATRICES 882
D.4 DETERMINANT OF SQUARE MATRICES 882
D.5 TRACE 883
D.6 EIGENDECOMPOSITION 883
D.7 SPECIAL HERMITIAN SQUARE MATRICES 884
E MISCELLANEOUS 885
E.l L HOPITAL S RULE 885
E.2 TAYLOR AND MACLAURIN SERIES 885
E.3 POWER SERIES 885
E.4 SUMS 886
E.5 COMPLEX NUMBERS 886
E.6 TRIGONOMETRIC IDENTITIES 886
E.7 INDEFINITE INTEGRALS 887
INDEX 889
|
any_adam_object | 1 |
author | Lathi, B. P. 1933- Ding, Zhi 1962- |
author_GND | (DE-588)174098936 (DE-588)17344413X |
author_facet | Lathi, B. P. 1933- Ding, Zhi 1962- |
author_role | aut aut |
author_sort | Lathi, B. P. 1933- |
author_variant | b p l bp bpl z d zd |
building | Verbundindex |
bvnumber | BV039637016 |
classification_rvk | ZN 6015 |
classification_tum | ELT 500f |
ctrlnum | (OCoLC)745577403 (DE-599)BSZ331055619 |
discipline | Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | International fourth edition |
format | Book |
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id | DE-604.BV039637016 |
illustrated | Illustrated |
indexdate | 2024-07-10T00:07:57Z |
institution | BVB |
isbn | 9780195384932 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024487014 |
oclc_num | 745577403 |
open_access_boolean | |
owner | DE-859 DE-91 DE-BY-TUM DE-706 |
owner_facet | DE-859 DE-91 DE-BY-TUM DE-706 |
physical | XXI, 903 Seiten Illustrationen 26 cm |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Oxford University Press |
record_format | marc |
series2 | The Oxford series in electrical and computer engineering |
spelling | Lathi, B. P. 1933- Verfasser (DE-588)174098936 aut Modern digital and analog communication systems B.P. Lathi, Zhi Ding International fourth edition New York ; Oxford Oxford University Press 2010 XXI, 903 Seiten Illustrationen 26 cm txt rdacontent n rdamedia nc rdacarrier The Oxford series in electrical and computer engineering Prev. ed.: 1998. - Includes bibliographical references and index Nachrichtentechnik (DE-588)4041066-3 gnd rswk-swf Nachrichtenübertragungssystem (DE-588)4171039-3 gnd rswk-swf Kommunikationssystem (DE-588)4125542-2 gnd rswk-swf Telekommunikation (DE-588)4059360-5 gnd rswk-swf Signaltheorie (DE-588)4054945-8 gnd rswk-swf Informationstheorie (DE-588)4026927-9 gnd rswk-swf Telecommunication systems Digital communications Statistical communication theory Telekommunikation (DE-588)4059360-5 s Informationstheorie (DE-588)4026927-9 s DE-604 Kommunikationssystem (DE-588)4125542-2 s Signaltheorie (DE-588)4054945-8 s 1\p DE-604 Nachrichtentechnik (DE-588)4041066-3 s 2\p DE-604 Nachrichtenübertragungssystem (DE-588)4171039-3 s 3\p DE-604 Ding, Zhi 1962- Verfasser (DE-588)17344413X aut HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024487014&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Lathi, B. P. 1933- Ding, Zhi 1962- Modern digital and analog communication systems Nachrichtentechnik (DE-588)4041066-3 gnd Nachrichtenübertragungssystem (DE-588)4171039-3 gnd Kommunikationssystem (DE-588)4125542-2 gnd Telekommunikation (DE-588)4059360-5 gnd Signaltheorie (DE-588)4054945-8 gnd Informationstheorie (DE-588)4026927-9 gnd |
subject_GND | (DE-588)4041066-3 (DE-588)4171039-3 (DE-588)4125542-2 (DE-588)4059360-5 (DE-588)4054945-8 (DE-588)4026927-9 |
title | Modern digital and analog communication systems |
title_auth | Modern digital and analog communication systems |
title_exact_search | Modern digital and analog communication systems |
title_full | Modern digital and analog communication systems B.P. Lathi, Zhi Ding |
title_fullStr | Modern digital and analog communication systems B.P. Lathi, Zhi Ding |
title_full_unstemmed | Modern digital and analog communication systems B.P. Lathi, Zhi Ding |
title_short | Modern digital and analog communication systems |
title_sort | modern digital and analog communication systems |
topic | Nachrichtentechnik (DE-588)4041066-3 gnd Nachrichtenübertragungssystem (DE-588)4171039-3 gnd Kommunikationssystem (DE-588)4125542-2 gnd Telekommunikation (DE-588)4059360-5 gnd Signaltheorie (DE-588)4054945-8 gnd Informationstheorie (DE-588)4026927-9 gnd |
topic_facet | Nachrichtentechnik Nachrichtenübertragungssystem Kommunikationssystem Telekommunikation Signaltheorie Informationstheorie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024487014&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT lathibp moderndigitalandanalogcommunicationsystems AT dingzhi moderndigitalandanalogcommunicationsystems |