Modern wireless communications:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Upper Saddle River, NJ
Pearson Prentice Hall
2005
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XVI, 560 S. graph. Darst. |
ISBN: | 0130224723 |
Internformat
MARC
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100 | 1 | |a Haykin, Simon S. |d 1931- |e Verfasser |0 (DE-588)128698497 |4 aut | |
245 | 1 | 0 | |a Modern wireless communications |c Simon Haykin and Michael Moher |
264 | 1 | |a Upper Saddle River, NJ |b Pearson Prentice Hall |c 2005 | |
300 | |a XVI, 560 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Includes bibliographical references and index | ||
650 | 7 | |a Sistema de comunicação |2 larpcal | |
650 | 4 | |a Spread spectrum communications | |
650 | 4 | |a Wireless communication systems | |
700 | 1 | |a Moher, Michael |e Verfasser |4 aut | |
856 | 4 | |u http://www3.ub.tu-berlin.de/ihv/000925869.pdf |3 Inhaltsverzeichnis | |
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999 | |a oai:aleph.bib-bvb.de:BVB01-013227874 |
Datensatz im Suchindex
_version_ | 1804133444995776512 |
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adam_text | MODERN WIRELESS COMMUNICATIONS SIMON HAYKIN MCMASTER UNIVERSITY
HAMILTON, ONTARIO, CANADA / AND MICHAEL MOHER SPACE-TIME DSP INC.
OTTAWA, ONTARIO, CANADA PEARSON PRENTICE HALL UPPER SADDLE RIVER, NJ
07458 CONTENTS PREFACE XIII CHAPTER 1 INTRODUCTION 1 1.1 BACKGROUND 1
1.2 COMMUNICATION SYSTEMS 3 1.3 THE PHYSICAL LAYER 3 1.4 THE DATA-LINK
LAYER 5 1.4.1 FDMA 5 1.4.2 TDMA 6 1.4.3 CDMA 7 1.4.4 SDMA 8 1.5 OVERVIEW
OF THE BOOK 8 NOTES AND REFERENCES 10 CHAPTER 2 PROPAGATION AND NOISE 11
2.1 INTRODUCTION 11 2.2 FREE-SPACE PROPAGATION 13 2.2.1 ISOTROPIC
RADIATION 13 2.2.2 DIRECTIONAL RADIATION 15 2.2.3 THE FRIIS EQUATION 18
2.2.4 POLARIZATION 19 2.3 TERRESTRIAL PROPAGATION: PHYSICAL MODELS 19
2.3.1 REFLECTION AND THE PLANE-EARTH MODEL 20 2.3.2 DIFFRACTION 24 2.3.3
DIFFRACTION LOSSES 28 2.4 TERRESTRIAL PROPAGATION: STATISTICAL MODELS 30
2.4.1 MEDIAN PATH LOSS 30 2.4.2 LOCAL PROPAGATION LOSS 32 2.5 INDOOR
PROPAGATION 33 2.6 LOCAL PROPAGATION EFFECTS WITH MOBILE RADIO 36 2.6.1
RAYLEIGH FADING 36 2.6.2 RICIAN FADING 40 VI CONTENTS 2.6.3 DOPPLER 42
2.6.4 FAST FADING 44 2.7 CHANNEL CLASSIFICATION 48 2.7.1 TIME-SELECTIVE
CHANNELS 50 2.7.2 FREQUENCY-SELECTIVE CHANNELS 52 2.7.3 GENERAL CHANNELS
52 2.7.4 WSSUS CHANNELS 54 2.7.5 COHERENCE TIME 57 2.7.6 POWER-DELAY
PROFILE 58 2.7.7 COHERENCE BANDWIDTH 60 2.7.8 STATIONARY AND
NONSTATIONARY CHANNELS 61 2.7.9 SUMMARY OF CHANNEL CLASSIFICATION 62 2.8
NOISE AND INTERFERENCE 63 2.8.1 THERMAL NOISE 63 2.8.2 EQUIVALENT NOISE
TEMPERATURE AND NOISE FIGURE 66 2.8.3 NOISE IN CASCADED SYSTEMS 68 2.8.4
MAN-MADE NOISE 70 2.8.5 MULTIPLE-ACCESS INTERFERENCE 71 2.9 LINK
CALCULATIONS 75 2.9.1 FREE-SPACE LINK BUDGET 75 2.9.2 TERRESTRIAL LINK
BUDGET 80 2.10 THEME EXAMPLE 1: OKUMURA-HATA EMPIRICAL MODEL 82 2.11
THEME EXAMPLE 2: WIRELESS LOCAL AREA NETWORKS 85 2.11.1 PROPAGATION
MODEL 85 2.11.2 RECEIVER SENSITIVITY 85 2.11.3 RANGE 86 2.11.4
POWER-DELAY PROFILE 86 2.11.5 MODULATION 88 2.12 THEME EXAMPLE 3:
IMPULSE RADIO AND ULTRA-WIDEBAND 89 2.13 SUMMARY AND DISCUSSION 94 NOTES
AND REFERENCES 95 ADDITIONAL PROBLEMS 96 CHAPTER 3 MODULATION AND
FREQUENCY-DIVISION MULTIPLE ACCESS 103 3.1 INTRODUCTION 103 3.2
MODULATION 105 3.2.1 LINEAR AND NONLINEAR MODULATION PROCESSES 106 3.2.2
ANALOG AND DIGITAL MODULATION TECHNIQUES 107 3.2.3 AMPLITUDE AND ANGLE
MODULATION PROCESSES 107 3.3 LINEAR MODULATION TECHNIQUES 108 3.3.1
AMPLITUDE MODULATION 108 3.3.2 BINARY PHASE-SHIFT KEYING 110 3.3.3
QUADRIPHASE-SHIFT KEYING 112 CONTENTS VII 3.3.4 OFFSET QUADRIPHASE-SHIFT
KEYING 114 3.3.5 7C/4-SHIFTED QUADRIPHASE-SHIFT KEYING 116 3.4 PULSE
SHAPING 116 3.4.1 ROOT RAISED-COSINE PULSE SHAPING 119 3.5 COMPLEX
REPRESENTATION OF LINEAR MODULATED SIGNALS AND BAND-PASS SYSTEMS 122
3.5.1 COMPLEX REPRESENTATION OF LINEAR BAND-PASS SYSTEMS 124 3.6
SIGNAL-SPACE REPRESENTATION OF DIGITALLY MODULATED SIGNALS 126 3.7
NONLINEAR MODULATION TECHNIQUES 130 3.7.1 FREQUENCY MODULATION 130 3.7.2
BINARY FREQUENCY-SHIFT KEYING 132 3.7.3 CONTINUOUS-PHASE MODULATION:
MINIMUM SHIFT KEYING 133 3.7.4 POWER SPECTRA OF MSK SIGNAL 137 3.7.5
GAUSSIAN-FILTERED MSK 139 3.8 FREQUENCY-DIVISION MULTIPLE ACCESS 142 3.9
TWO PRACTICAL ISSUES OF CONCERN 144 3.9.1 ADJACENT CHANNEL INTERFERENCE
144 3.9.2 POWER AMPLIFIER NONLINEARITY 146 3.10 COMPARISON OF MODULATION
STRATEGIES FOR WIRELESS COMMUNICATIONS 148 3.10.1 LINEAR CHANNELS 148
3.10.2 NONLINEAR CHANNELS 150 3.11 CHANNEL ESTIMATION AND TRACKING 151
3.11.1 DIFFERENTIAL DETECTION 152 3.11.2 PILOT SYMBOL TRANSMISSION 154
3.12 RECEIVER PERFORMANCE: BIT ERROR RATE 158 3.12.1 CHANNEL NOISE 158
3.13 THEME EXAMPLE 1: ORTHOGONAL FREQUENCY-DIVISION MULTIPLEXING 162
3.13.1 CYCLIC PREFIX 167 3.14 THEME EXAMPLE 2: CORDLESS
TELECOMMUNICATIONS 168 3.15 SUMMARY AND DISCUSSION 170 NOTES AND
REFERENCES 171 ADDITIONAL PROBLEMS 173 CHAPTER 4 CODING AND
TIME-DIVISION MULTIPLE ACCESS 179 4.1 INTRODUCTION 179 4.2 SAMPLING 182
4.3 WHY FOLLOW SAMPLING WITH CODING? 184 4.4 SHANNON S INFORMATION
THEORY 185 4.4.1 SOURCE-CODING THEOREM 185 4.4.2 CHANNEL-CODING THEOREM
186 4.4.3 INFORMATION CAPACITY THEOREM 187 4.4.4 RATE DISTORTION THEORY
188 4.5 SPEECH CODING 189 4.5.1 LINEAR PREDICTION 189 VIII CONTENTS
4.5.2 MULTIPULSE EXCITED LPC 190 4.5.3 CODE-EXCITED LPC 192 4.6
ERROR-CONTROL CODING 193 4.6.1 CYCLIC REDUNDANCY CHECK CODES 194 4.7
CONVOLUTIONAL CODES 195 4.7.1 TRELLIS AND STATE DIAGRAMS OF
CONVOLUTIONAL CODES 198 4.7.2 FREE DISTANCE OF A CONVOLUTIONAL CODE 200
4.8 MAXIMUM-LIKELIHOOD DECODING OF CONVOLUTIONAL CODES 201 4.9 THE
VITERBI ALGORITHM 203 4.9.1 MODIFICATIONS OF THE VITERBI ALGORITHM 205
4.10 INTERLEAVING 207 4.10.1 BLOCK INTERLEAVING 208 4.10.2 CONVOLUTIONAL
INTERLEAVING 210 4.10.3 RANDOM INTERLEAVING 212 4.11 NOISE PERFORMANCE
OF CONVOLUTIONAL CODES 212 4.12. TURBO CODES 215 4.12.1 TURBO ENCODING
215 4.12.2 TURBO DECODING 216 4.12.3 NOISE PERFORMANCE 218 4.12.4
MAXIMUM A POSTERIORI PROBABILITY DECODING 219 4.13 COMPARISON OF
CHANNEL-CODING STRATEGIES FOR WIRELESS COMMUNICATIONS 222 4.13.1
ENCODING 223 4.13.2 DECODING 224 4.13.3 AWGN CHANNEL 225 / 4.13.4 FADING
WIRELESS CHANNELS 225 4.13.5 LATENCY 225 4.13.6 JOINT EQUALIZATION AND
DECODING 226 4.14 RF MODULATION REVISITED 226 4.15 BASEBAND PROCESSING
FOR CHANNEL ESTIMATION AND EQUALIZATION 227 4.15.1 CHANNEL ESTIMATION
229 4.15.2 VITERBI EQUALIZATION 231 4.16 TIME-DIVISION MULTIPLE ACCESS
233 4.16.1 ADVANTAGES OF TDMA OVER FDMA 234 4.16.2 TDMA OVERLAID ON FDMA
235 4.17 THEME EXAMPLE 1: GSM 236 4.18 THEME EXAMPLE 2: JOINT
EQUALIZATION AND DECODING 239 4.18.1 COMPUTER EXPERIMENT 241 4.19 THEME
EXAMPLE 3: RANDOM-ACCESS TECHNIQUES 243 4.19.1 PURE ALOHA 243 4.19.2
SLOTTED ALOHA 245 4.19.3 CARRIER-SENSE MULTIPLE ACCESS 245 4.19.4 OTHER
CONSIDERATIONS WITH RANDOM-ACCESS PROTOCOLS 248 CONTENTS IX 4.20 SUMMARY
AND DISCUSSION 249 NOTES AND REFERENCES 251 ADDITIONAL PROBLEMS 252
CHAPTER 5 SPREAD SPECTRUM AND CODE-DIVISION MULTIPLE ACCESS 258 5.1
INTRODUCTION 258 5.2 DIRECT-SEQUENCE MODULATION 260 5.2.1 THE SPREADING
EQUATION 260 5.2.2 MATCHED-FILTER RECEIVER 262 5.2.3 PERFORMANCE WITH
INTERFERENCE 263 5.3 SPREADING CODES 265 5.3.1 WALSH-HADAMARD SEQUENCES
267 5.3.2 ORTHOGONAL VARIABLE SPREADING FACTORS 269 5.3.3 MAXIMAL-LENGTH
SEQUENCES 270 5.3.4 SCRAMBLERS 274 5.3.5 GOLD CODES 274 5.3.6 RANDOM
SEQUENCES 276 5.4 THE ADVANTAGES OF CDMA FOR WIRELESS 279 5.4.1
MULTIPLE-ACCESS INTERFERENCE 279 5.4.2 MULTIPATH CHANNELS 283 5.4.3 RAKE
RECEIVER 284 5.4.4 FADING CHANNELS 288 5.4.5 SUMMARY OF THE BENEFITS OF
DS-SS 289 5.5 CODE SYNCHRONIZATION 290 5.6 CHANNEL ESTIMATION 292 5.7
POWER CONTROL: THE NEAR-FAR PROBLEM 294 5.8 FEC CODING AND CDM^. 297 5.9
MULTIUSER DETECTION 7 299 5.10 CDMA IN A CELLULAR ENVIRONMENT 301 5.11
FREQUENCY-HOPPED SPREAD SPECTRUM 306 5.11.1 COMPLEX BASEBAND
REPRESENTATION OF FH-SS 307 5.11.2 SLOW-FREQUENCY HOPPING 308 5.11.3
FAST-FREQUENCY HOPPING 310 5.11.4 PROCESSING GAIN 310 5.12 THEME EXAMPLE
1: IS-95 311 5.12.1 CHANNEL PROTOCOL 311 5.12.2 PILOT CHANNEL 313 5.12.3
DOWNLINK CDMA CHANNELS 314 5.12.4 POWER CONTROL 316 5.12.5 CELLULAR
CONSIDERATIONS 317 5.12.6 UPLINK 318 5.13 THEME EXAMPLE 2: GPSS 319 5.14
THEME EXAMPLE 3: BLUETOOTH 321 X CONTENTS 5.15 THEME EXAMPLE 4: WCDMA
323 5.15.1 BANDWIDTH AND CHIP RATE 324 5.15.2 DATA RATES AND SPREADING
FACTOR 324 5.15.3 MODULATION AND SYNCHRONIZATION 324 5.15.4 FORWARD
ERROR-CORRECTION CODES 324 5.15.5 CHANNEL TYPES 325 5.15.6 UPLINK 325
5.15.7 DOWNLINK 326 5.15.8 MULTICODE TRANSMISSION 327 5.15.9 CELLULAR
CONSIDERATIONS 327 5.16 THEME EXAMPLE 5: WI-FI 328 5.17 SUMMARY AND
DISCUSSION 331 NOTES AND REFERENCES 332 ADDITIONAL PROBLEMS 333 CHAPTER
6 DIVERSITY, CAPACITY, AND SPACE-DIVISION MULTIPLE ACCESS 339 6.1
INTRODUCTION 339 6.2 SPACE DIVERSITY ON RECEIVE TECHNIQUES 341 6.2.1
SELECTION COMBINING 341 6.2.2 MAXIMAL-RATIO COMBINING 346 6.2.3
EQUAL-GAIN COMBINING 353 6.2.4 SQUARE-LAW COMBINING 353 6.3
MULTIPLE-INPUT, MULTIPLE-OUTPUT ANTENNA SYSTEMS 357 6.3.1 COANTENNA
INTERFERENCE 358 6.3.2 BASIC BASEBAND CHANNEL MODEL 360 /? 6.4 MIMO
CAPACITY FOR CHANNEL KNOWN AT THE RECEIVER 363 6.4.1 ERGODIC CAPACITY
363 6.4.2 TWO OTHER SPECIAL CASES OF THE LOG-DET FORMULA: CAPACITIES OF
RECEIVE AND TRANSMIT DIVERSITY LINKS 366 6.4.3 OUTAGE CAPACITY 367 6.4.4
CHANNEL KNOWN AT THE TRANSMITTER 371 6.5 SINGULAR-VALUE DECOMPOSITION OF
THE CHANNEL MATRIX 371 6.5.1 EIGENDECOMPOSITION OF THE LOG-DET CAPACITY
FORMULA 374 6.6 SPACE-TIME CODES FOR MIMO WIRELESS COMMUNICATIONS 376
6.6.1 PRELIMINARIES 378 6.6.2 ALAMOUTI CODE 379 6.6.3 PERFORMANCE
COMPARISON OF DIVERSITY-ON-RECEIVE AND DIVERSITY-ON-TRANSMIT SCHEMES 387
6.6.4 GENERALIZED COMPLEX ORTHOGONAL SPACE-TIME BLOCK CODES 389 6.6.5
PERFORMANCE COMPARISONS OF DIFFERENT SPACE-TIME BLOCK CODES USING A
SINGLE RECEIVER 392 6.7 DIFFERENTIAL SPACE-TIME BLOCK CODES 395 6.7.1
DIFFERENTIAL SPACE-TIME BLOCK CODING 395 CONTENTS XI 6.7.2 TRANSMITTER
AND RECEIVER STRUCTURES 401 6.7.3 NOISE PERFORMANCE 402 6.8
SPACE-DIVISION MULTIPLE ACCESS AND SMART ANTENNAS 404 6.8.1 ANTENNA
ARRAYS 406 6.8.2 MULTIPATH WITH DIRECTIONAL ANTENNAS 412 6.9 THEME
EXAMPLE 1: BLAST ARCHITECTURES 415 6.9.1 DIAGONAL-BLAST ARCHITECTURE 416
6.9.2 VERTICAL-BLAST ARCHITECTURE 417 6.9.3 TURBO-BLAST ARCHITECTURE 419
6.9.4 EXPERIMENTAL PERFORMANCE EVALUATION OF TURBO-BLAST VERSUS V-BLAST
422 6.10 THEME EXAMPLE 2: DIVERSITY, SPACE-TIME BLOCK CODES, AND V-BLAST
426 6.10.1 DIVERSITY-ON-RECEIVE VERSUS DIVERSITY-ON-TRANSMIT 426 6.10.2
SPACE-TIME BLOCK CODES VERSUS V-BLAST 427 6.10.3 DIVERSITY ORDER AND
MULTIPLEXING GAIN 429 6.11 THEME EXAMPLE 3: KEYHOLE CHANNELS 432 6.12
SUMMARY AND DISCUSSION . 436 NOTES AND REFERENCES 439 ADDITIONAL
PROBLEMS 441 CHAPTER 7 WIRELESS ARCHITECTURES 450 7.1 INTRODUCTION 450
7.2 COMPARISON OF MULTIPLE-ACCESS STRATEGIES 450 7.3 OSI REFERENCE MODEL
454 7.4 THE OSI MODEL AND WIRELESS COMMUNICATIONS 457 7.5 MAC SUBLAYER
SIGNALING AND PROTOCOLS 458 7.6 POWER CONTROL 461,, 7.6.1 OPEN LOOP 462
7.6.2 CLOSED LOOP 463 7.6.3 OUTER-LOOP POWER CONTROL 464 7.6.4 OTHER
CONSIDERATIONS 464 7.7 HANDOVER 465 7.7.1 HANDOVER ALGORITHMS 465 7.7.2
MULTIPLE-ACCESS CONSIDERATIONS 466 7.8 NETWORK LAYER 467 7.8.1 CELLULAR
NETWORKS 467 7.8.2 INDOOR LANS 469 7.9 THEME EXAMPLE 1: WIRELESS
TELEPHONE NETWORK STANDARDS 470 7.10 THEME EXAMPLE 2: WIRELESS DATA
NETWORK STANDARDS 472 7.11 THEME EXAMPLE 3: IEEE 802.11 MAC 473 7.12
SUMMARY AND DISCUSSION 475 NOTES AND REFERENCES 476 PROBLEMS 476 XII
CONTENTS APPENDIX A FOURIER THEORY 479 APPENDIX B BESSEL FUNCTIONS 493
APPENDIX C RANDOM VARIABLES AND RANDOM PROCESSES 496 APPENDIX D MATCHED
FILTERS 509 APPENDIX E ERROR FUNCTION 516 APPENDIX F MAP ALGORITHM 520
APPENDIX G CAPACITY OF MIMO LINKS 522 APPENDIX H EIGENDECOMPOSITION 533
APPENDIX I ADAPTIVE ARRAY ANTENNAS 536 BIBLIOGRAPHY 544 INDEX 551
|
any_adam_object | 1 |
author | Haykin, Simon S. 1931- Moher, Michael |
author_GND | (DE-588)128698497 |
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building | Verbundindex |
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dewey-ones | 621 - Applied physics |
dewey-raw | 621.382 |
dewey-search | 621.382 |
dewey-sort | 3621.382 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV019976051 |
illustrated | Illustrated |
indexdate | 2024-07-09T20:08:49Z |
institution | BVB |
isbn | 0130224723 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-013227874 |
oclc_num | 52901362 |
open_access_boolean | |
owner | DE-20 DE-29T DE-83 DE-M347 DE-B768 |
owner_facet | DE-20 DE-29T DE-83 DE-M347 DE-B768 |
physical | XVI, 560 S. graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
publishDateSort | 2005 |
publisher | Pearson Prentice Hall |
record_format | marc |
spelling | Haykin, Simon S. 1931- Verfasser (DE-588)128698497 aut Modern wireless communications Simon Haykin and Michael Moher Upper Saddle River, NJ Pearson Prentice Hall 2005 XVI, 560 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index Sistema de comunicação larpcal Spread spectrum communications Wireless communication systems Moher, Michael Verfasser aut http://www3.ub.tu-berlin.de/ihv/000925869.pdf Inhaltsverzeichnis HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013227874&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Haykin, Simon S. 1931- Moher, Michael Modern wireless communications Sistema de comunicação larpcal Spread spectrum communications Wireless communication systems |
title | Modern wireless communications |
title_auth | Modern wireless communications |
title_exact_search | Modern wireless communications |
title_full | Modern wireless communications Simon Haykin and Michael Moher |
title_fullStr | Modern wireless communications Simon Haykin and Michael Moher |
title_full_unstemmed | Modern wireless communications Simon Haykin and Michael Moher |
title_short | Modern wireless communications |
title_sort | modern wireless communications |
topic | Sistema de comunicação larpcal Spread spectrum communications Wireless communication systems |
topic_facet | Sistema de comunicação Spread spectrum communications Wireless communication systems |
url | http://www3.ub.tu-berlin.de/ihv/000925869.pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013227874&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT haykinsimons modernwirelesscommunications AT mohermichael modernwirelesscommunications |
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