CDMA systems engineering handbook:
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Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston
Artech House Publ.
1998
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Schriftenreihe: | Mobile communications series
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Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXII, 1228 S. graph. Darst. |
ISBN: | 0890069905 |
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MARC
LEADER | 00000nam a2200000 c 4500 | ||
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001 | BV012825662 | ||
003 | DE-604 | ||
005 | 20000516 | ||
007 | t | ||
008 | 991025s1998 d||| |||| 00||| eng d | ||
020 | |a 0890069905 |9 0-89006-990-5 | ||
035 | |a (OCoLC)318283962 | ||
035 | |a (DE-599)BVBBV012825662 | ||
040 | |a DE-604 |b ger |e rakwb | ||
041 | 0 | |a eng | |
049 | |a DE-1046 |a DE-91 |a DE-898 | ||
082 | 0 | |a 621.382 |b L224 |2 21 | |
084 | |a ZN 6550 |0 (DE-625)157571: |2 rvk | ||
084 | |a ELT 745b |2 stub | ||
100 | 1 | |a Lee, Jhong S. |e Verfasser |4 aut | |
245 | 1 | 0 | |a CDMA systems engineering handbook |c Jhong S. Lee ; Leonard E. Miller |
264 | 1 | |a Boston |b Artech House Publ. |c 1998 | |
300 | |a XXII, 1228 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Mobile communications series | |
650 | 4 | |a Acceso múltiple por división de códigos - Manuales | |
650 | 4 | |a Comunicaciones digitales | |
650 | 4 | |a Sistemas de transmisión de datos | |
650 | 4 | |a Sistemas móviles de comunicación | |
650 | 4 | |a Telecomunicaciones - Manuales | |
650 | 4 | |a Telefonía digital | |
650 | 0 | 7 | |a CDMA |0 (DE-588)4358900-5 |2 gnd |9 rswk-swf |
689 | 0 | 0 | |a CDMA |0 (DE-588)4358900-5 |D s |
689 | 0 | |5 DE-604 | |
700 | 1 | |a Miller, Leonard E. |e Verfasser |4 aut | |
856 | 4 | 2 | |m GBV Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008725740&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-008725740 |
Datensatz im Suchindex
_version_ | 1804127502239531008 |
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adam_text | CDMA SYSTEMS ENGINEERING HANDBOOK JHONG SAM LEE LEONARD E. MILLER ARTECH
HOUSE BOSTON * LONDON TABLE OF CONTENTS PREFACE XIX CHAPTER 1:
INTRODUCTION AND REVIEW OF SYSTEMS ANALYSIS BASICS 1 1.1 INTRODUCTION 1
1.1.1 MULTIPLE ACCESS TECHNIQUES 3 1.1.2 SPREAD-SPECTRUM TECHNIQUES 7
1.1.3 IS-95 SYSTEM CAPACITY ISSUES 10 1.1.4 CATEGORIES OF
SPREAD-SPECTRUM SYSTEMS 14 1.1.5 SO, WHAT IS CDMA? 18 1.1.6 BATTLE OF
JAMMING POWER VERSUS PROCESSING GAIN 21 1.2 REVIEW OF LINEAR SYSTEMS
ANALYSIS FUNDAMENTALS 24 1.2.1 LINEAR SYSTEMS 24 1.2.2 FINITE IMPULSE
RESPONSE FILTER 33 1.2.3 FOURIER SERIES 36 1.2.3.1 TRIGONOMETRIC AND
EXPONENTIAL FOURIER SERIES 36 1.2.3.2 FOURIER TRANSFORM OF A PERIODIC
FUNCTION 37 1.3 SAMPLING THEOREMS 41 1.3.1 SAMPLING THEOREM IN THE
FREQUENCY DOMAIN 41 1.3.2 SAMPLING THEOREM IN THE TIME DOMAIN 43 1.3.3
SAMPLING THEOREM FOR BANDPASS WAVEFORMS 47 1.3.4 DISCRETE TIME FILTERING
49 1.4 BASEBAND PULSE SHAPING FOR BANDLIMITED TRANSMISSION 52 1.4.1
BANDLIMITED WAVEFORMS FOR DIGITAL APPLICATIONS 53 1.4.2 FIR PULSE
SHAPING IN IS-95 58 1.5 PROBABILITY FUNCTIONS 64 1.5.1 PROBABILITIES 68
1.5.2 PROBABILITY DISTRIBUTION FUNCTIONS 70 1.5.3 CHARACTERISTIC
FUNCTION 84 1.5.4 MOMENT GENERATING FUNCTION 87 1.5.5 CORRELATION
FUNCTIONS AND POWER SPECTRA 94 1.5.6 CENTRAL LIMIT THEOREM 105 1.5.7
CHERNOFF BOUNDS 107 1.5.8 THE NARROWBAND GAUSSIAN RANDOM PROCESS 114
1.5.8.1 RAYLEIGH DISTRIBUTIONS 115 1.5.8.2 RAYLEIGH FADING 118 VII VIII
CDMA SYSTEMS ENGINEERING HANDBOOK 1.5.8.3 SINEWAVE PLUS NARROWBAND
GAUSSIAN RANDOM PROCESS 120 1.5.8.4 MODELING AND SIMULATION OF BANDPASS
NOISE 126 1.5.9 CHI-SQUARED DISTRIBUTIONS 141 1.5.9.1 CENTRAL
CHI-SQUARED DISTRIBUTION 141 1.5.9.2 NONCENTRAL CHI-SQUARED DISTRIBUTION
144 1.5.10 LOGNORMAL DISTRIBUTIONS 150 1.5.10.1 PROBABILITY DENSITY
FUNCTION OF A LOGNORMAL RV.... 152 1.5.10.2 MOMENTS OF LOGNORMAL RVS 153
REFERENCES 154 APPENDIX 1A IMPULSE RESPONSE OF IDEAL FILTER #2 158
APPENDIX IB INTEGRAL OF SINE FUNCTION 159 APPENDIX 1C IMPULSE RESPONSE
RC FILTER 160 APPENDIX ID PROBABILITY FOR A DIFFERENCE OF CHI-SQUARED
RVS 161 CHAPTER 2: MOBILE RADIO PROPAGATION CONSIDERATIONS 165 2.1
OVERVIEW OF PROPAGATION THEORY AND MODELS 165 2.1.1 FREE-SPACE
PROPAGATION 165 2.1.2 RADIO HORIZON AND PROPAGATION MODES 167 2.1.2.1
EFFECT OF THE ATMOSPHERE 168 2.1.2.2 CHARACTERIZATION OF TERRAIN AND ITS
EFFECTS 171 2.1.2.3 PROPAGATION MODES 175 2.1.3 LOS AND DIFFRACTION
PROPAGATION MODES 177 2.1.3.1 PROPAGATION IN THE LOS REGION 177 2.1.3.2
DIFFRACTION OVER TERRAIN AND BUILDINGS 184 2.1.4 EMPIRICAL PROPAGATION
FORMULAS 186 2.1.4.1 HATA AND CCIR FORMULAS 187 2.1.4.2 WALFISCH-IKEGAMI
FORMULA 190 2.1.5 COMPUTER PROPAGATION LOSS MODELS 199 2.1.5.1 THE
LONGLEY-RICE AND TIREM MODELS 199 2.1.5.2 COMPARISON OF WIM AND
LONGLEY-RICE 202 2.1.6 THE USE OF PROPAGATION MODELS IN CELLULAR DESIGN
205 2.1.6.1 NUMERICAL EXAMPLE OF A PROPAGATION LOSS CONTOUR.. 207
2.1.6.2 COVERAGE AREA VERSUS MAXIMUM TOLERABLE PROPAGATION LOSS 210 2.2
THE MOBILE RADIO ENVIRONMENT 215 2.2.1 CHANNEL MODELS 215 2.2.1.1
DELAY-SPREAD FUNCTION 216 TABLE OF CONTENTS 2.2.1.2 FREQUENCY TRANSFER
FUNCTION 221 2.2.1.3 DOPPLER-SPREAD FUNCTION 224 2.2.1.4 COMBINED DELAY
SPREAD AND DOPPLER SPREAD 226 2.2.2 FADING AND FADE RATE 229 2.2.2.1
CHARACTERIZATION OF THE RANDOM FADING CHANNEL 229 2.2.2.2 COMMONLY USED
FADING TERMS 234 2.2.2.3 FADE RATE AND VEHICULAR SPEED 237 2.2.3
LOGNORMAL SHADOWING 247 REFERENCES 248 APPENDIX 2A DETAILS OF
PROPAGATION LOSS FOR IRREGULAR TERRAIN 251 2A.1 ANGLES OF ELEVATION 251
2A.2 LOS PATH LOSS 253 2A.3 DIFFRACTION LOSS 254 APPENDIX 2B DERIVATION
OF FADE RATE AND DURATION FORMULAS 256 CHAPTER 3: BASIC CELLULAR SYSTEMS
ENGINEERING 265 3.1 REVIEW OF TELEPHONE TRAFFIC THEORY 265 3.1.1
TELEPHONE CONNECTIVITY 265 3.1.2 TRAFFIC LOAD AND TRUNK SIZE 266 3.1.3
ERLANG B STATISTICS 267 3.2 THE CELLULAR CONCEPT 274 3.2.1 EXPANSION OF
MOBILE SYSTEM CAPACITY THROUGH FREQUENCY REUSE 275 3.2.2 CELL GEOMETRY
277 3.2.2.1 CELLULAR COORDINATE SYSTEMS 279 3.2.2.2 CLUSTERS OF
HEXAGONAL CELLS 282 3.2.2.3 LOCATIONS OF INTERFERING CELLS 284 3.2.3
SELECTION OF CLUSTER SIZE 287 3.2.3.1 INTERFERENCE RATIO VERSUS CLUSTER
SIZE 288 3.2.3.2 TRADEOFF OF INTERFERENCE RATIO AND SPECTRAL EFFICIENCY
293 3.2.4 CELL SPLITTING AND BASE STATION POWER 296 3.2.5 AMPS
PARAMETERS 299 3.3 COVERAGE AND CAPACITY IN CELLULAR SYSTEMS 302 3.3.1
COVERAGE LIMITS 302 3.3.1.1 GENERIC CELLULAR SYSTEM LINK BUDGET 303
3.3.1.2 RECEIVER NOISE CALCULATION 304 3.3.1.3 MAXIMUM TOLERABLE
PROPAGATION LOSS 304 3.3.2 COVERAGE VERSUS CAPACITY 305 CDMA SYSTEMS
ENGINEERING HANDBOOK 3.3.2.1 LINK MARGIN FOR THE COVERAGE-LIMITED CASE
306 3.3.2.2 DETERMINATION OF MULTICELL MARGIN REQUIREMENTS 309 3.3.2.3
REVERSE LINK C/I AND C/N AS FUNCTIONS OF SYSTEM LOADING 317 3.3.2.4
SYSTEM COVERAGE VERSUS TRAFFIC LOAD 321 REFERENCES 328 APPENDIX 3A
DEMONSTRATION THAT THE FORM OF PK SATIFIES THE EQUATIONS 329 APPENDIX 3B
MOMENTS FOR THE ERLANG B DISTRIBUTION 330 APPENDIX 3C SUMMARY OF
BLOCKING FORMULAS 331 CHAPTER 4: OVERVIEW OF THE IS-95 STANDARD 333 4.1
COORDINATION OF FREQUENCY AND TIME 335 4.1.1 CELLULAR FREQUENCY BANDS
AND CHANNELS 336 4.1.2 SYSTEM TIME 338 4.2 DESCRIPTION OF FORWARD LINK
OPERATIONS 340 4.2.1 FORWARD LINK CAI SUMMARY 340 4.2.2 ORTHOGONAL
MULTIPLEXING SCHEME 341 4.2.3 FORWARD LINK CHANNELS 343 4.2.3.1 PILOT
CHANNEL AND QUADRATURE PN CODES 344 4.2.3.2 SYNCHRONIZATION CHANNEL 347
4.2.3.3 PAGING CHANNELS 350 4.2.3.4 TRAFFIC CHANNELS 353 4.3 DESCRIPTION
OF REVERSE LINK OPERATIONS 356 4.3.1 REVERSE LINK CAI SUMMARY 356 4.3.2
MULTIPLE ACCESS SCHEME 357 4.3.3 REVERSE LINK CHANNELS 360 4.3.3.1
ACCESS CHANNEL 360 4.3.3.2 REVERSE TRAFFIC CHANNEL 362 4.3.4 COMPARISON
OF FORWARD AND REVERSE LINKS 366 4.4 SPECIAL FEATURES OF THE IS-95
SYSTEM 367 4.4.1 POWER CONTROL 368 4.4.1.1 OPEN-LOOP POWER CONTROL 369
4.4.1.2 CLOSED-LOOP POWER CONTROL 371 4.4.1.3 FORWARD LINK POWER CONTROL
373 4.4.2 INTERLEAVING TECHNIQUES 374 4.4.3 DIVERSITY AND HANDOFF 388
REFERENCES 397 APPENDIX 4A THEORY OF INTERLEAVING 398 TABLE OF CONTENTS
4A.1 BLOCK INTERLEAVING 398 4A.2 CONVOLUTIONAL INTERLEAVING 399 4A.3
COMPARISON OF BLOCK AND CONVOLUTIONAL INTERLEAVING 404 4A.4 INTERLEAVER
DESIGN .-. 405 APPENDIX 4B HASH FUNCTION USED IN IS-95 407 4B.1 REVIEW
OF THE GOLDEN RATIO AND FIBONACCI NUMBERS 409 4B.2 HASH FUNCTION EXAMPLE
411 4B.3 THE IS-95 HASH FUNCTION 414 4B.4 IS-95 RANDOM NUMBER GENERATOR
418 CHAPTER 5: WALSH FUNCTIONS AND CRC CODES 425 5.1 DEFINITION OF THE
WALSH FUNCTIONS 426 5.2 WALSH SEQUENCE SPECIFICATIONS (INSTANT WALSH
FUNCTIONS) 430 5.3 WALSH FUNCTION GENERATION 433 5.3.1 WALSH FUNCTION
GENERATION USING RADEMACHER FUNCTIONS 438 5.3.2 WALSH FUNCTION
GENERATION USING HADAMARD MATRICES 443 5.3.3 FINITE FIELDS 447 5.3.4
VECTOR SPACES 452 5.3.5 WALSH FUNCTION GENERATION USING BASIS VECTORS
456 5.4 ORTHOGONAL WALSH FUNCTIONS FOR CDMA APPLICATIONS 461 5.4.1 WALSH
FUNCTIONS USED IN THE FORWARD LINK 461 5.4.2 WALSH FUNCTIONS USED IN THE
REVERSE LINK 467 5.5 WALSH FUNCTION DECODING 468 5.5.1 CORRELATION
DECODING 469 5.5.2 FAST WALSH TRANSFORM DECODING 474 5.6 IS-95 DATA
FRAMES... 478 5.7 LINEAR BLOCK CODES 480 5.7.1 PARITY CHECK MATRIX 488
5.7.2 CONCEPT OF SYNDROME AND ERROR DETECTION 494 5.7.3 HAMMING CODES
501 5.8 CYCLIC CODES 504 5.8.1 SYSTEMATIC CYCLIC CODES 510 5.8.2
ENCODERS FOR CYCLIC CODES 513 5.8.3 SYNDROME CALCULATION BY SHIFT
REGISTER CIRCUITS FOR ERROR DETECTION 521 5.9 BINARY BCH CODES 527 5.10
FRAME AND MESSAGE STRUCTURE QUALITY INDICATORS 531 5.10.1 CRC
COMPUTATIONS FOR THE FORWARD LINK CHANNELS 533 5.10.2 CRC COMPUTATIONS
FOR THE REVERSE LINK CHANNELS 538 XII CDMA SYSTEMS ENGINEERING HANDBOOK
REFERENCES 540 CHAPTER 6: THEORY AND APPLICATION OF PSEUDONOISE
SEQUENCES 543 6.1 PROPERTIES OF PSEUDONOISE SEQUENCES 543 6.2 EXTENSION
GALOIS FIELDS AND PRIMITIVE POLYNOMIALS 546 6.2.1 ROOTS OF PRIMITIVE
POLYNOMIALS AND MAXIMAL-LENGTH SEQUENCES 553 6.2.2 RECIPROCAL
POLYNOMIALS ^ AND TABLES OF IRREDUCIBLE POLYNOMIALS 559 6.2.3
MECHANIZATION OF LINEAR FEEDBACK SHIFT REGISTERS FOR BINARY IRREDUCIBLE
PRIMITIVE POLYNOMIALS 562 6.2.4 STATE VECTOR VARIATIONS FOR PN SEQUENCE
PHASE SHIFTS 572 6.3 SHIFT REGISTER IMPLEMENTATION OF PN SEQUENCES 576
6.3.1 SHIFT REGISTER GENERATORS WITH SPECIAL LOADING VECTORS 578 6.3.2
DERIVATION OF SEQUENCES AT THE MSRG OUTPUTS 584 6.3.3 THE USE OF MASKS
TO SELECT A SEQUENCE PHASE SHIFT 589 6.3.4 RELATIONSHIP BETWEEN THE MASK
AND THE SEQUENCE SHIFT FOR ARBITRARY SHIFT REGISTER LOADING 593 6.3.4.1
FIVE-STAGE MSRG EXAMPLE 605 6.3.4.2 PN SEQUENCES SPECIFIED IN IS-95 611
6.3.4.3 EXAMPLE SHORT PN CODE MASKS 618 6.4 AUTOCORRELATION AND
CROSS-CORRELATION PROPERTIES OF BINARY SEQUENCES 624 6.4.1 CORRELATION
FUNCTION FOR REAL-TIME SIGNALS 629 6.4.2 PARTIAL CORRELATION FUNCTIONS
OF PN SEQUENCES 635 6.4.3 SPECTRAL PROPERTIES OF BINARY SEQUENCE
WAVEFORMS 639 6.5 OPERATIONS ON MAXIMAL-LENGTH SEQUENCES 644 6.5.1
ORTHOGONALIZATION 644 6.5.2 DECIMATION OF PN SEQUENCES 649 6.6 GOLD
CODES 654 6.6.1 THE CROSS-CORRELATION PROBLEM 656 6.6.2 GOLD CODES AND
GPS SIGNAL STRUCTURE 663 REFERENCES 665 APPENDIX 6A INDUCTIVE PROOF OF
THE FACT THAT G(X) = S*(X) 666 APPENDIX 6B COMPUTER PROGRAMS 668 6B.1
PROGRAM FOR COMPUTING THE SHIFT K 668 6B.2 PROGRAM FOR COMPUTING
X^MODULO F(X) 669 6B.3 PROGRAM FOR COMPUTING LONG PN CODE TRANSITION
MATRIX.... 670 APPENDIX 6C PROOF OF CORRELATION FUNCTION THEOREM 672
TABLE OF CONTENTS XIII APPENDIX 6D EXTENSION OF CORRELATION THEOREM TO
BANDLIMITED PULSES 673 CHAPTER 7: MODULATION AND DEMODULATION OF IS-95
SPREAD-SPECTRUM SIGNALS 677 7.1 LIKELIHOOD FUNCTION 677 7.1.1 VECTOR
REPRESENTATION OF THE WAVEFORMS 679 7.1.2 OPTIMAL RECEIVER PRINCIPLES
FOR GAUSSIAN CHANNELS 687 7.1.3 CORRELATION RECEIVERS 690 7.1.4 MATCHED
FILTER RECEIVERS 693 7.1.5 PERFORMANCE EVALUATIONS FOR M-ARY
COMMUNICATIONS IN AWGN 699 7.1.6 UNION BOUND ON THE PROBABILITY OF ERROR
OF M-ARY COMMUNICATIONS SYSTEMS 705 7.2 MODULATION SCHEMES USED IN THE
IS-95 SYSTEM 713 7.2.1 FORWARD LINK 714 7.2.1.1 ERROR PERFORMANCE OF
FORWARD LINK CHANNEL SYMBOLS IN AWGN 720 7.2.1.2 ERROR PERFORMANCE OF
FORWARD LINK CHANNEL SYMBOLS IN RAYLEIGH FADING 727 7.2.2 REVERSE LINK
728 7.2.2.1 NONCOHERENT SIGNAL PROCESSING 728 7.2.2.2 ENVELOPE DETECTION
RECEIVER FOR M-ARY COMMUNICATIONS SYSTEM 736 7.2.2.3 NONCOHERENT BINARY
ORTHOGONAL SYSTEM 740 7.2.2.4 NONCOHERENT BINARY ORTHOGONAL SYSTEM IN
RAYLEIGH FADING 746 7.2.2.5 IS-95 CDMA REVERSE LINK M-ARY ORTHOGONAL
MODULATION SCHEME 746 7.2.2.6 OPTIMAL DEMODULATION FOR IS-95 REVERSE
LINK WAVEFORMS 750 7.2.2.7 REVERSE LINK PERFORMANCE IN RAYLEIGH FADING
761 7.3 QPSK VERSUS BPSK 763 7.3.1 ANALYSIS OF A BPSK CDMA SYSTEM 763
7.3.2 ANALYSIS OF A QPSK CDMA SYSTEM 769 7.3.3 COMPARISON OF BPSK, QPSK
VARIANCES 773 7.4 PN CODE ACQUISITION AND TRACKING 774 7.4.1 REVIEW OF
CORRELATION OPERATIONS 777 7.4.2 INITIAL SEQUENCE PHASE ACQUISITION 782
7.4.3 CODE TRACKING WITH A DELAY-LOCK LOOP 790 XIV CDMA SYSTEMS
ENGINEERING HANDBOOK 7.4.3.1 FULL-TIME NONCOHERENT DLL TRACKING 794
7.4.3.2 FULL-TIME COHERENT DLL TRACKING 800 7.4.4 TDL TRACKING 803 7.5
SHAPED VERSUS UNSHAPED PN SEQUENCES FOR DESPREADING 806 7.5.1 ANALYSIS
OF THE EFFECT OF PULSE SHAPE AT THE RECEIVER 806 7.5.2 SIMULATED
COMPARISON OF THE ENERGIES ACCUMULATED 810 REFERENCES 814 APPENDIX 7A
THE GRAM-SCHMIDT ORTHOGONALIZATION PROCEDURE 816 APPENDIX 7B AVERAGE OF
BPSK ERROR PROBABILITY 822 APPENDIX 7C PARAMETERS OF INTEGRATED WHITE
NOISE 823 APPENDIX 7D DETAILS OF BPSK AND QPSK VARIANCES 827 APPENDIX 7E
ACQUISITION DECISION NOISE TERMS 834 CHAPTER 8: CONVOLUTIONAL CODES AND
THEIR USE IN IS-95 839 8.1 INTRODUCTION 839 8.2 CONVOLUTIONAL CODES 847
8.2.1 CONVOLUTIONAL ENCODERS 848 8.2.2 ENCODER CONNECTION VECTOR
REPRESENTATION 851 8.2.3 ENCODER IMPULSE RESPONSE REPRESENTATION 853
8.2.4 POLYNOMIAL REPRESENTATION OF THE ENCODER 858 8.2.5 STATE
REPRESENTATION OF THE ENCODER 860 8.2.6 TREE DIAGRAM FOR A CONVOLUTIONAL
ENCODER 864 8.2.7 TRELLIS DIAGRAM FOR A CONVOLUTIONAL ENCODER 866 8.3
MAXIMUM LIKELIHOOD DECODING OF CONVOLUTIONAL CODES 871 8.3.1 MINIMUM
HAMMING DISTANCE DECODING RULE 871 8.3.2 VITERBI DECODING ALGORITHM 875
8.3.3 DISTANCE PROPERTIES OF CONVOLUTIONAL CODES 882 8.3.4 TRANSFER
FUNCTIONS OF CONVOLUTIONAL CODES 884 8.3.4.1 SYSTEMATIC AND
NONSYSTEMATIC CONVOLUTIONAL CODES 8.3.4.2 CATASTROPHIC ERROR PROPAGATION
IN CONVOLUTIONAL CODES 8.4 PERFORMANCE BOUNDS FOR VITERBI DECODING OF
CONVOLUTIONAL CODES 890 8.4.1 PROBABILITY OF ERROR BOUNDS FOR HARD
DECISION DECODING 891 8.4.2 BIT-ERROR PROBABILITY FOR THE BSC 895 8.4.3
PROBABILITY OF ERROR BOUNDS FOR SOFT-DECISION DECODING 896 8.4.4
BIT-ERROR PROBABILITY BOUNDS FOR SOFT-DECISION VITERBI DECODING 898
8.4.5 ESTIMATES OF CODING GAINS OF CONVOLUTIONAL CODES 903 8.5
CONVOLUTIONAL CODES USED IN THE IS-95 CDMA SYSTEM 906 TABLE OF CONTENTS
XV 8.5.1 PERFORMANCE OF THE CONVOLUTIONAL CODES USED IN THE IS-95 SYSTEM
909 8.5.2 CODING GAINS VERSUS CONSTRAINT LENGTH 913 8.5.3 QUANTIZATION
OF THE RECEIVED SIGNAL 916 REFERENCES 922 SELECTED BIBLIOGRAPHY 924
APPENDIX 8A PROOF OF Q-FUNCTION INEQUALITY 925 CHAPTER 9: DIVERSITY
TECHNIQUES AND RAKE PROCESSING 927 9.1 INTRODUCTION 927 9.2 DIVERSITY
TECHNIQUES 928 9.3 DIVERSITY SELECTION AND COMBINING TECHNIQUES 930
9.3.1 SELECTION DIVERSITY 930 9.3.1.1 NONCOHERENT M-ARY FREQUENCY-SHIFT
KEYING (NCMFSK) 933 9.3.1.2 NONCOHERENT BINARY FREQUENCY-SHIFT KEYING
(NCBFSK) 934 9.3.1.3 BPSK MODULATION 935 9.3.1.4 TT/4 DQPSK MODULATION
SYSTEM WITH DIFFERENTIAL DETECTION 937 9.3.2 EQUAL GAIN DIVERSITY
COMBINING 939 9.3.2.1 M-ARY NONCOHERENT ORTHOGONAL MODULATION SYSTEM 939
9.3.2.2 MFSK WITH RAYLEIGH FADING 946 9.3.2.3 BPSK MODULATION UNDER
L-FOLD DIVERSITY WITH EGC RECEPTION 949 9.3.2.4 TT/4 DQPSK MODULATION
WITH DIFFERENTIAL DETECTION UNDER L -F OLD DIVERSITY WITH EGC RECEPTION
961 9.3.2.5 NONCOHERENT BINARY ORTHOGONAL SYSTEM AND OPTIMAL DIVERSITY
961 9.3.3 MAXIMAL RATIO COMBINING DIVERSITY RECEPTION 964 9.3.3.1
OPTIMALITY PROOF OF MRC DIVERSITY RECEPTION 965 9.3.3.2 EXAMPLE OF MRC
969 9.4 THE RAKE RECEIVER CONCEPT 972 9.4.1 BASICS OF RAKE RECEIVER
DESIGN 974 9.4.2 THE ESSENCE OF PRICE AND GREEN S RAKE CONCEPT 976 9.4.3
THE USE OF THE RAKE CONCEPT IN IS-95 981 REFERENCES 982 XVI CDMA SYSTEMS
ENGINEERING HANDBOOK SELECTED BIBLIOGRAPHY 984 APPENDIX 9A DERIVATION OF
M-ARY ORTHOGONAL DIVERSITY PERFORMANCES.. 987 9A.1 SELECTION DIVERSITY
987 9A.2 EGC DIVERSITY RECEPTION 988 APPENDIX 9B DERIVATION OF BPSK
DIVERSITY PERFORMANCES 992 9B.1 SELECTION DIVERSITY 992 9B.2 EGC
DIVERSITY RECEPTION 993 APPENDIX 9C DERIVATION OF TT/4 DQPSK DIVERSITY
PERFORMANCES 997 9C.1 SELECTION DIVERSITY PERFORMANCE 997 9C.2 EGC
DIVERSITY RECEPTION 999 CHAPTER 10: CDMA CELLULAR SYSTEM DESIGN AND
ERLANG CAPACITY 1001 10.1 CDMA CELLS 1001 10.1.1 FORWARD LINK COCHANNEL
INTERFERENCE 1002 10.1.1.1 SAME-CELL INTERFERENCE 1002 10.1.1.2
OTHER-CELL INTERFERENCE 1005 10.1.2 REVERSE LINK COCHANNEL INTERFERENCE
1012 10.1.2.1 SAME-CELL INTERFERENCE 1012 10.1.2.2 OTHER-CELL
INTERFERENCE 1013 10.1.2.3 CDMA REUSE PARAMETERS 1017 10.1.2.4 CDMA
CAPACITY REVISITED 1018 10.1.2.5 CDMA CELL LOADING 1020 10.1.3 CELL SIZE
1022 10.1.3.1 MAXIMUM PROPAGATION LOSS AND THE CELL RADIUS 1023 10.1.3.2
FORWARD LINK POWER BUDGET 1033 10.1.3.3 REVERSE LINK POWER BUDGET 1039
10.1.3.4 LINK BALANCING 1043 10.2 CDMA LINK RELIABILITY AND ERLANG
CAPACITY 1048 10.2.1 LINK RELIABILITY AND LINK MARGIN 1048 10.2.1.1 LINK
MARGIN FOR NO INTERFERENCE 1049 10.2.1.2 LINK MARGIN AND POWER CONTROL
1051 10.2.1.3 MARGIN REQUIRED WITH INTERFERENCE 1052 10.2.1.4 MARGIN FOR
DIVERSITY RECEPTION AND SOFT HANDOFF.... 1053 10.2.1.5 RELIABLE SIGNAL
LEVEL 1056 10.2.2 ERLANG CAPACITY 1057 10.2.2.1 FORMULATION OF THE
BLOCKING PROBABILITY 1058 10.2.2.2 MEAN AND VARIANCE OF Z 106 1 10.2.2.3
CDMA BLOCKING PROBABILITY FORMULA TABLE OF CONTENTS XVII FOR GAUSSIAN
ASSUMPTIONS 1064 10.2.2.4 CDMA BLOCKING PROBABILITY FORMULA FOR
LOGNORMAL ASSUMPTIONS 1070 10.2.2.5 COMPARISON OF CDMA BLOCKING
PROBABILITIES 1074 10.2.2.6 ERLANG CAPACITY COMPARISONS OF CDMA, FDMA,
ANDTDMA 1078 10.2.2.7 NUMBER OF SUBSCRIBERS DURING THE BUSY HOUR 1080
10.2.3 CDMA AREA COVERAGE ANALYSIS 1081 10.2.3.1 REQUIRED RECEIVED
SIGNAL LEVEL AS A FUNCTION OF LOADING 1082 10.2.3.2 CELL RADIUS AS A
FUNCTION OF CELL LOADING 1089 10.2.3.3 BASE STATION DENSITY 1094
REFERENCES 1103 APPENDIX 10A ANALYSIS OF SECOND-ORDER REUSE FRACTION
1107 CHAPTER 11: CDMA OPTIMIZATION ISSUES 1111 11.1 SELECTION OF PILOT
PN CODE OFFSETS 1112 11.1.1 THE ROLE OF PN OFFSETS IN SYSTEM OPERATION
1113 11.1.2 PILOT OFFSET SEARCH PARAMETERS 1116 11.1.2.1 EFFECT OF
MULTIPATH ON SEARCH WINDOW 1120 11.1.2.2 BOUNDS ON RELATIVE DELAYS 1121
11.1.2.3 IS-95 SEARCH WINDOW PARAMETERS 1122 11.1.3 SELECTION OF OFFSET
SPACING 1124 11.2 OPTIMAL ALLOCATION OF CDMA FORWARD LINK POWER 1129
11.2.1 FORWARD LINK CHANNEL SNR REQUIREMENTS 1130 11.2.1.1 PILOT CHANNEL
1130 11.2.1.2 SYNC CHANNEL 1131 11.2.1.3 PAGING CHANNELS 1131 11.2.1.4
TRAFFIC CHANNELS 1132 11.2.1.5 INTERFERENCE AND NOISE TERMS 1132 11.2.2
TOTAL FORWARD LINK POWER 1133 11.2.2.1 FORWARD LINK POWER CONTROL FACTOR
1134 11.2.2.2 NET LOSSES ON THE FORWARD LINK 1136 11.2.3 SOLUTION FOR
FORWARD LINK POWERS 1137 1 11.2.3.1 ALLOCATED CHANNEL POWER AS A
FRACTION OF TOTAL POWER 1145 11.2.3.2 PARAMETRIC VARIATIONS IN THE POWER
SOLUTIONS 1147 11.3 SELECTION OF FORWARD LINK FADE MARGINS 1151 11.3.1
LIMITS ON RECEIVER MARGIN 1153 XVIII CDMA SYSTEMS ENGINEERING HANDBOOK
11.3.1.1 RECEIVER AND TRANSMITTER POWERS UNDER NO INTERFERENCE 1154
11.3.1.2 RECEIVER AND TRANSMITTER POWERS WHEN THERE IS INTERFERENCE 1156
11.3.2 NUMERICAL EXAMPLES OF CDMA MARGIN 1158 11.3.2.1 RECEIVER MARGIN
VERSUS TRANSMITTER MARGIN 1159 11.3.2.2 RECEIVER MARGIN VERSUS TOTAL
FORWARD LINK POWER 1162 11.4 FORWARD AND REVERSE LINK CAPACITY BALANCING
1162 11.4.1 FORWARD LINK CAPACITY 1164 11.4.1.1 ASYMPTOTIC FORWARD LINK
CAPACITY 1164 11.4.1.2 POWER-LIMITED FORWARD LINK CAPACITY 1167 11.4.2
CAPACITY BALANCING 1170 11.5 IMPLEMENTATION OF FORWARD LINK DYNAMIC
POWER ALLOCATION 1178 REFERENCES 1186 ABOUT THE AUTHORS 1187 INDEX 1189
|
any_adam_object | 1 |
author | Lee, Jhong S. Miller, Leonard E. |
author_facet | Lee, Jhong S. Miller, Leonard E. |
author_role | aut aut |
author_sort | Lee, Jhong S. |
author_variant | j s l js jsl l e m le lem |
building | Verbundindex |
bvnumber | BV012825662 |
classification_rvk | ZN 6550 |
classification_tum | ELT 745b |
ctrlnum | (OCoLC)318283962 (DE-599)BVBBV012825662 |
dewey-full | 621.382 |
dewey-hundreds | 600 - Technology (Applied sciences) |
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 Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV012825662 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:34:22Z |
institution | BVB |
isbn | 0890069905 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-008725740 |
oclc_num | 318283962 |
open_access_boolean | |
owner | DE-1046 DE-91 DE-BY-TUM DE-898 DE-BY-UBR |
owner_facet | DE-1046 DE-91 DE-BY-TUM DE-898 DE-BY-UBR |
physical | XXII, 1228 S. graph. Darst. |
publishDate | 1998 |
publishDateSearch | 1998 |
publishDateSort | 1998 |
publisher | Artech House Publ. |
record_format | marc |
series2 | Mobile communications series |
spelling | Lee, Jhong S. Verfasser aut CDMA systems engineering handbook Jhong S. Lee ; Leonard E. Miller Boston Artech House Publ. 1998 XXII, 1228 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Mobile communications series Acceso múltiple por división de códigos - Manuales Comunicaciones digitales Sistemas de transmisión de datos Sistemas móviles de comunicación Telecomunicaciones - Manuales Telefonía digital CDMA (DE-588)4358900-5 gnd rswk-swf CDMA (DE-588)4358900-5 s DE-604 Miller, Leonard E. Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008725740&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Lee, Jhong S. Miller, Leonard E. CDMA systems engineering handbook Acceso múltiple por división de códigos - Manuales Comunicaciones digitales Sistemas de transmisión de datos Sistemas móviles de comunicación Telecomunicaciones - Manuales Telefonía digital CDMA (DE-588)4358900-5 gnd |
subject_GND | (DE-588)4358900-5 |
title | CDMA systems engineering handbook |
title_auth | CDMA systems engineering handbook |
title_exact_search | CDMA systems engineering handbook |
title_full | CDMA systems engineering handbook Jhong S. Lee ; Leonard E. Miller |
title_fullStr | CDMA systems engineering handbook Jhong S. Lee ; Leonard E. Miller |
title_full_unstemmed | CDMA systems engineering handbook Jhong S. Lee ; Leonard E. Miller |
title_short | CDMA systems engineering handbook |
title_sort | cdma systems engineering handbook |
topic | Acceso múltiple por división de códigos - Manuales Comunicaciones digitales Sistemas de transmisión de datos Sistemas móviles de comunicación Telecomunicaciones - Manuales Telefonía digital CDMA (DE-588)4358900-5 gnd |
topic_facet | Acceso múltiple por división de códigos - Manuales Comunicaciones digitales Sistemas de transmisión de datos Sistemas móviles de comunicación Telecomunicaciones - Manuales Telefonía digital CDMA |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008725740&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT leejhongs cdmasystemsengineeringhandbook AT millerleonarde cdmasystemsengineeringhandbook |