Single frequency network technology for fast ad hoc communication networks over power lines:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
Duisburg [u.a.]
WiKu-Verl.
2010
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 232 S. Ill., graph. Darst. |
ISBN: | 9783865533463 |
Internformat
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336 | |b txt |2 rdacontent | ||
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502 | |a Zugl.: Erlangen-Nürnberg, Univ., Diss., 2009 | ||
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Datensatz im Suchindex
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adam_text | TABLE OF CONTENTS 13 TABLE OF CONTENTS I ABSTRACT 7 UE ZUSAMMENFASSUNG 12
FFI TABLE OF CONTENTS 13 1 INTRODUCTION 19 2 STATE OF THE ART 25 2.1
SINGLE FREQUENCY NETWORKS 25 2.1.1 MODE OF OPERATION 25 2.1.2
IMPLEMENTED SFN SYSTEMS 28 2.1.2.1 ANALOG FM-VOICE RADIO 28 2.1.2.2
DIGITAL RADIO DAB 29 2.2 POWER LINE COMMUNICATIONS 31 2.2.1
CHARACTERIZATION OF DIGITAL POWER LINE COMMUNICATION SYSTEMS 31 2.2.2
BROADBAND PLC 32 2.2.3 NARROWBAND SYSTEMS WITH LOW DATA-RATE 33 2.2.4
NARROWBAND SYSTEMS WITH HIGH DATA RATE 33 2.2.5 TRANSMISSION CHANNEL 35
2.2.5.1 MODELING OF THE TRANSFER FUNCTION 36 2.2.5.2 ANALYSIS OF NOISE
AND INTERFERENCES 39 2.2.5.2.1 COLORED NOISE 40 2.2.5.2.2 NARROW BAND
NOISE 40 2.2.5.2.3 PERIODIC IMPULSIVE NOISE 41 2.2.5.2.4 ASYNCHRONOUS
IMPULSIVE NOISE 41 2.2.5.3 TYPICAL SIGNAL-TO-NOISE RATIOS FOR POWER
LINES 42 BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/998744034
DIGITALISIERT DURCH 3.2.2.2 TIME DIFFERENCES BETWEEN THE TRANSMITTERS 91
14 GERD HUMILIER: *INELE FREQUENCY NETWORK TECHNOLOIRV FOR FAST AD-HOC
NETWORKS OVER POWER LINES 2.2.6 EXISTING COMMUNICATION CONCEPTS FOR PLC
44 2.2.6.1 STEPS OF DEVELOPMENT 44 2.2.6.2 REQUIREMENTS FOR A NARROWBAND
PLC SYSTEM 46 2.2.6.3 CHANNEL ACCESS 48 2.2.6.4 TRANSMISSION METHOD 50
2.2.6.4.1 INTERFERENCE ANALYSIS OF DFT BASED MCM SYSTEMS 52 2.2.6.4.2
EFFICIENT CONFIGURABLE SUPPRESSION OF NARROW FREQUENCY BANDS 53
2.2.6.4.3 MODULATION CONCEPT 60 2.2.6.5 PHYSICAL LAYER CONCEPT 63
2.2.6.5.1 TRANSMIT PATH 65 2.2.6.5.2 RECEIVE PATH 67 2.2.6.5.3
SYNCHRONIZATION 70 3 PHYSICAL LAYER FOR SINGLE FREQUENCY NETWORKS 72 3.1
THEORETICAL CONSIDERATIONS 72 3.1.1 ASSUMPTIONS ABOUT THE CHANNEL 72
3.1.2 ANALYSIS OF THE MAXIMUM DESTRUCTIVE INTERFERENCE 75 3.1.3 EFFECTS
OF DIFFERENT CARRIER PHASES 77 3.1.4 EFFECTS OF DIFFERENT CARRIER
FREQUENCIES 78 3.1.5 EFFECTS OF DIFFERENT SIGNAL PROPAGATION DELAYS 79
3.1.5.1 EFFECTS OF DIFFERENT SIGNAL PROPAGATION DELAYS OF SEVERAL
TRANSMITTERS 81 3.1.6 EFFECTS OF DIFFERENT PROPAGATION DELAYS AND
CARRIER FREQUENCIES 82 3.1.7 RANDOM CARRIER PHASE AT THE START OF A
TRANSMISSION 85 3.2 VERIFICATION OF ANALYSIS RESULTS BY MEASUREMENTS 86
3.2.1 MEASUREMENT SET-UP 86 3.2.2 TRANSMISSION TESTS 89 3.2.2.1
VERIFYING THE BENEFIT OF A RANDOM TRANSMIT PHASE 90 4.1.4 MULTI MASTER
SYSTEMS 136 TABLE OF CONTENTS 15 3.2.2.3 TIME OFFSET BETWEEN THE
TRANSMITTERS 94 3.2.2.4 FREQUENCY OFFSET BETWEEN TRANSMITTER AND
RECEIVER 96 3.2.2.5 FREQUENCY AND TIME OFFSET BETWEEN THE TRANSMITTERS
99 3.3 SYNCHRONIZATION AND ADJUSTING OF AGC 102 3.3.1 AUTOMATIC GAIN
CONTROL (AGC) 103 3.3.2 BURST SYNCHRONIZATION 106 3.3.3 PREAMBLE DESIGN
109 3.3.3.1 BASIC STRUCTURE OF THE PREAMBLE 109 3.3.3.2 DESIGN
CONSTRAINTS AND REQUIREMENTS 110 3.3.3.3 DESIGN APPROACH 111 3.3.3.3.1
FREQUENCY DOMAIN DESIGN 111 3.3.3.3.2 OPTIMIZATION 112 3.3.3.3.3
PARAMETER ADJUSTMENT 114 3.3.4 PERFORMANCE EVALUATION AND DISCUSSION 115
3.3.4.1 PREAMBLE SEQUENCES 115 3.3.4.2 NUMERICAL RESULTS 116 3.3.4.2.1
RF SIGNAL AND CORRELATION PROPERTIES 117 3.3.4.2.2 SYNCHRONIZATION
PERFORMANCE 119 3.3.4.2.3 AGC ADJUSTMENT 125 3.3.5 CONCLUSION ON
SYNCHRONIZATION AND ADJUSTING OF AGC 127 3.4 TOOLS FOR PROTOCOL ANALYSIS
CONSIDERING PHY IN SFNS 128 4 NETWORK LAYER AND ROUTING 130 4.1 MEDIUM
ACCESS CONTROL 131 4.1.1 MASTER-SLAVE MAC 132 4.1.2 TDMA FOR PDU
INTERLEAVING 134 4.1.3 HYBRID MAC 135 4.4.8.3 SIMULATION RESULTS WITH
REGULATION 182 16 GERD BUMILLER: *INELE FREQUENCY NETWORK TECHNOLOGY FOR
FAST AD-HOC NETWORKS OVER POWER UNES 4.2 SFN-BASED FLOODING CONCEPT 136
4.3 FLOODING BASED MASTER-SLAVE MAC 142 4.3.1 PIPELINED MASTER-SLAVE
FLOODING 143 4.3.1.1 BREAK EVEN OF PIPELINED MASTER-SLAVE SYSTEM 144
4.3.2 CLASSICAL MASTER-SLAVE FLOODING 146 4.3.3 DETERMINATION OF THE
REQUIRED NUMBERS OF REPETITIONS 148 4.3.3.1 MASTER RECEIVES NO ANSWER
FROM SLAVE 148 4.3.3.2 TRANSMISSION TASK WAS SUCCESSFUL WITHOUT RETRY
149 4.4 COMPARISON OF ROUTING- AND FLOODING-BASED MASTER-SLAVE SYSTEMS
153 4.4.1 PERFORMANCE CRITERIA FOR MASTER - SLAVE ORIENTED PROTOCOLS 154
4.4.2 REACTION TO SLOW CHANGES OF THE NETWORK 155 4.4.3 REACTION TO
ABRUPT CHANGES OF THE NETWORK 155 4.4.4 PROTOCOL OVERHEAD 159 4.4.5
PACKETS FOR PRIMARY ROUTING AND NETWORKING PURPOSES 160 4.4.6 DELIVERY
TIME OF A BROADCAST MESSAGE 160 4.4.6.1 ROUTING-BASED BROADCAST MESSAGES
161 4.4.6.2 FLOODING-BASED BROADCAST 163 4.4.7 LOGON TIME 166 4.4.8
DURATION OF A POLLING CYCLE 167 4.4.8.1 ROUTING BASED MASTER-SLAVE
SYSTEM 168 4.4.8.1.1 TRANSMISSION WITHOUT REPEATERS 169 4.4.8.1.2
TRANSMISSION VIA REPEATERS 169 4.4.8.1.3 INFLUENCE OF THE CREST FACTOR
172 4.4.8.1.4 PERFORMANCE OF AN IMPLEMENTED SYSTEM 174 4.4.8.2
FLOODING-BASED MASTER-SLAVE SYSTEM 175 D.7 TABLES 221 TABLE OF CONTENTS
17 5 IMPLEMENTED SYSTEMS 186 5.1 REMPLI 186 5.2 ALISA 187 APPENDIX 189 A
PREAMBLE SEQUENCES CONSIDERED FOR PERFORMANCE EVALUATION 189 B
PHYSICAL-LAYER EMULATOR 190 B.I CONCEPT OF THE EMULATOR 191 B.2
STRUCTURE OF THE EMULATOR 193 B.3 CHARACTERIZATION OF NETWORK TOPOLOGIES
196 B.3.1 DEFINITION OF POWER EFFICIENCY OF SYNCHRONIZATION AND
TRANSMISSION 198 B.4 PHYSICAL-LAYER TRANSMIT EMULATOR 200 B.4.1
INFLUENCE OF CREST FACTOR 200 B.5 PHYSICAL-LAYER RECEIVE EMULATOR 202
B.5.1 SYNCHRONIZATION 203 B.5.2 DATA TRANSMISSION 206 C EXAMPLES OF
NETWORK TOPOLOGIES 209 C.I CONSTRUCTIVE RING MODEL 209 C.2 RANDOMLY
DISTRIBUTED TREE MODEL 211 D LIST OF THE MOST IMPORTANT FORMULAIC
SYMBOLS 214 D.I OPERATORS AND TRANSFORMATIONS 214 D.2 SCALARE 214 D.3
FUNCTIONS 217 D.4 SEQUENCES 219 D.5 VECTORS 220 D.6 MATRICES 221 18 GERD
BUMILLER: *INELE FREQUENCY NETWORK TECHNOLOGY FOR FAST AD-HOC NETWORKS
OVER POWER LINES E ABBREVIATIONS 222 F LITERATURE 226
|
any_adam_object | 1 |
author | Bumiller, Gerd |
author_facet | Bumiller, Gerd |
author_role | aut |
author_sort | Bumiller, Gerd |
author_variant | g b gb |
building | Verbundindex |
bvnumber | BV036097771 |
classification_rvk | ZN 8520 |
ctrlnum | (OCoLC)634240542 (DE-599)BVBBV036097771 |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Thesis Book |
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id | DE-604.BV036097771 |
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indexdate | 2024-07-09T22:11:31Z |
institution | BVB |
isbn | 9783865533463 |
language | English |
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physical | 232 S. Ill., graph. Darst. |
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publisher | WiKu-Verl. |
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spelling | Bumiller, Gerd Verfasser aut Single frequency network technology for fast ad hoc communication networks over power lines Gerd Bumiller Duisburg [u.a.] WiKu-Verl. 2010 232 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Zugl.: Erlangen-Nürnberg, Univ., Diss., 2009 Ad-hoc-Netz (DE-588)4674811-8 gnd rswk-swf Verteilungsnetz (DE-588)4279392-0 gnd rswk-swf Regenerativverstärker (DE-588)4177388-3 gnd rswk-swf Netzwerktopologie (DE-588)4208537-8 gnd rswk-swf Powerline-Kommunikation (DE-588)4657345-8 gnd rswk-swf Gleichkanalbetrieb (DE-588)4209265-6 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Verteilungsnetz (DE-588)4279392-0 s Powerline-Kommunikation (DE-588)4657345-8 s Gleichkanalbetrieb (DE-588)4209265-6 s Ad-hoc-Netz (DE-588)4674811-8 s Regenerativverstärker (DE-588)4177388-3 s Netzwerktopologie (DE-588)4208537-8 s DE-604 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018988225&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Bumiller, Gerd Single frequency network technology for fast ad hoc communication networks over power lines Ad-hoc-Netz (DE-588)4674811-8 gnd Verteilungsnetz (DE-588)4279392-0 gnd Regenerativverstärker (DE-588)4177388-3 gnd Netzwerktopologie (DE-588)4208537-8 gnd Powerline-Kommunikation (DE-588)4657345-8 gnd Gleichkanalbetrieb (DE-588)4209265-6 gnd |
subject_GND | (DE-588)4674811-8 (DE-588)4279392-0 (DE-588)4177388-3 (DE-588)4208537-8 (DE-588)4657345-8 (DE-588)4209265-6 (DE-588)4113937-9 |
title | Single frequency network technology for fast ad hoc communication networks over power lines |
title_auth | Single frequency network technology for fast ad hoc communication networks over power lines |
title_exact_search | Single frequency network technology for fast ad hoc communication networks over power lines |
title_full | Single frequency network technology for fast ad hoc communication networks over power lines Gerd Bumiller |
title_fullStr | Single frequency network technology for fast ad hoc communication networks over power lines Gerd Bumiller |
title_full_unstemmed | Single frequency network technology for fast ad hoc communication networks over power lines Gerd Bumiller |
title_short | Single frequency network technology for fast ad hoc communication networks over power lines |
title_sort | single frequency network technology for fast ad hoc communication networks over power lines |
topic | Ad-hoc-Netz (DE-588)4674811-8 gnd Verteilungsnetz (DE-588)4279392-0 gnd Regenerativverstärker (DE-588)4177388-3 gnd Netzwerktopologie (DE-588)4208537-8 gnd Powerline-Kommunikation (DE-588)4657345-8 gnd Gleichkanalbetrieb (DE-588)4209265-6 gnd |
topic_facet | Ad-hoc-Netz Verteilungsnetz Regenerativverstärker Netzwerktopologie Powerline-Kommunikation Gleichkanalbetrieb Hochschulschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018988225&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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