Future machine-to-machine communications LTE-A optimization for M2M applications
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WiSa
2018
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Datensatz im Suchindex
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adam_text | TABLE OF CONTENTS
MOBILE NETWORK
EVOLUTION.........................................................1
. 1 LONG TERM EVOLUTION
OVERVIEW..........................................2
1.1.1
ARCHITECTURE..................................................................5
1.1.1.1 USER
EQUIPMENT.....................................................7
1.1.1.2
ENODEB.................................................................
7
1.1.1.3 MOBILITY MANAGEMENT ENTITY
................................
7
1.1.1.4 SERVING
GATEWAY....................................................8
1.1.1.5 PACKET DATA NETWORK GATEWAY
.............................
8
1.1.2 PROTOCOL
STACK...............................................................9
1.1.3 AIR
INTERFACE................................................................
11
1.1.3.1 ORTHOGONAL FREQUENCY DIVISION MULTIPLE ACCESS
12
1.1.3.2 SINGLE CARRIER FREQUENCY DIVISION MULTIPLE
ACCESS 14
1.1.3.3 LTE FRAME STRUCTURE...........................................15
1.1.4 SYSTEM
DEPLOYMENT....................................................16
1.1.5 QUALITY OF
SERVICE.......................................................19
1.1.5.1 GUARANTEED BIT RATE BEARERS
..............................
19
1.1.5.2 NON-GUARANTEED BIT RATE BEARERS
.....................
20
1.1.5.3 QOS CLASS IDENTIFIERS
..........................................
20
1.1.5.4 ALLOCATION AND RETENTION PRIORITY.......................20
1.1.5.5 PRIORITIZED BIT RATE
.............................................
21
1.1.6 TRANSPORT AND PHYSICAL CHANNELS
.............................
22
1.1.6.1 DOWNLINK TRANSPORT AND PHYSICAL CHANNELS
......
22
1.1.6.2 UPLINK TRANSPORT AND PHYSICAL CHANNELS
.........
25
1.1.7 ADMISSION
CONTROL..................................................... 26
1.1.8 HYBRID AUTOMATIC REPEAT REQUEST..............................27
1.1.9 UPLINK
SIGNALING........................................................ 28
1.1.10 POWER
CONTROL............................................................ 29
1.1.11 PACKET
SCHEDULING......................................................34
1.1.12 LINK ADAPTATION
.........................................................
39
1.2
LTE-ADVANCED....................................................................40
1.2.1 AIR INTERFACE
................................................................
41
1.2.2 CARRIER AGGREGATION
....................................................
42
1.2.3 COORDINATED
MULTIPOINT..............................................44
1.2.4 RELAY
NODES............................................................. ..45
1.3 M2M COMMUNICATION
........................................................
45
1.4 PROBLEM STATEMENT....................................... 46
1.5 RELATED LITERATURE
...............................................................
48
1.6 BOOK
OVERVIEW....................................................................50
2. BROADBAND RADIO RESOURCE MANAGEMENT................................52
2.1 LTE UPLINK
SCHEDULING.......................................................52
2.1.1 CHANNEL
MODELS.........................................................52
2.1.1.1 PATH
LOSS..............................................................53
2.1.1.2 SLOW FADING
........................................................
53
2.1.1.3 FAST FADING
.........................................................
55
2.1.2 SCHEDULER
OVERVIEW..................................................56
2.1.3 TIME DOMAIN PACKET SCHEDULER
................................
58
2.1.3.1 TIME DOMAIN METRIC ALGORITHMS
......................
58
2.1.4 FREQUENCY DOMAIN PACKET SCHEDULER
.........................
61
2.1.4.1 FREQUENCY DOMAIN METRIC ALGORITHMS
..............
62
2.1.4.2 RC ALLOCATION ALGORITHM...................................64
2.1.5 MULTI-BEARER USER SCHEDULING...................................66
2.1.6 OPNET MODELER AND SIMULATION ENVIRONMENT
........
67
2.1.7 SIMULATION PARAMETERS, TRAFFIC MODELS AND RESULTS 69
2.1.7.1 FAIRNESS IN DIVERSE CHANNEL CONDITIONS
............
71
2.1.7.2 PERFORMANCE IN SINGLE-BEARER SCENARIO.
............
73
2.1.7.3 PERFORMANCE IN DOUBLE-BEARER SCENARIO
...........
76
2.2 LTE-A UPLINK
SCHEDULING.................................................. 79
2.2.1 COMPONENT CARRIER SELECTION
.....................................
80
2.2.2 SCHEDULER OVERVIEW
..................................................
81
2.2.3 TIME DOMAIN PACKET SCHEDULER................................82
2.2.4 FREQUENCY DOMAIN PACKET SCHEDULER........................82
2.2.5 SIMULATION PARAMETERS, TRAFFIC MODELS AND RESULTS 84
2.2.5.1 COMPONENT CARRIER SELECTION RESULTS
................
85
2.2.5.2 SCHEDULING RESULTS
.............................................
88
MACHINE-TO-MACHINE COMMUNICATION......................................92
3.1 M2M NETWORK ARCHITECTURE AND DOMAINS..........................93
3.1.1
DEVICES.......................................................................93
3.1.2 AREA NETWORKS
...........................................................
94
3.1.3
GATEWAY......................................................................94
3.1.4 COMMUNICATION NETWORKS.........................................94
3.1.5 APPLICATIONS
.........
......................................................95
3.2 M2M STANDARDIZATION
........................................................
95
3.2.1
3GPP...........................................................................96
3.2.2
ETSI............................................................................
96
3.2.3
IEEE...........................................................................96
3.2.4
ONEM2M.....................................................................97
3.3 M2M APPLICATION
AREAS....................................................97
3.3.1 LOGISTICS
....................................................................
97
3.3.2 SMART METERING AND MONITORING
...............................
99
3.3.3 INTELLIGENT TRAFFIC
SYSTEMS........................................99
3.3.4
E-HEALTHCARE..............................................................100
3.4 M2M
TRAFFIC.....................................................................102
3.4.1 TRAFFIC
TRENDS........................................................... 102
3.4.2 M2M
ISSUES...............................................................
103
3.5 IMPACT OF M2M TRAFFIC ON LTE AND LTE-A PERFORMANCE
104
3.6 SIMULATION PARAMETERS, TRAFFIC MODELS AND RESULTS
.....
107
3.6.1
LOGISTICS...................................................................107
3.6.2
E-HEALTHCARE..............................................................109
3.7 CONCLUSION
....................
..................................................111
RELAY N
ODE.............................................................................112
4.1 RELAY NODE
CLASSIFICATION.................................................113
4.1.1 MOBILITY BASED CLASSIFICATION.................................113
4.1.1.1 FIXED RELAY
NODE..............................................113
4.1.1.2 MOVING RELAY NODE...........................................114
4.1.2 RELAYING TECHNOLOGY BASED CLASSIFICATION
.............
115
4.1.2.1 LAYER 1 RELAY NODE...........................................115
4.1.2.2 LAYER 2 RELAY NODE
..........................................
116
4.1.2.3 LAYER 3 RELAY NODE...........................................116
4.1.3 AIR INTERFACE BASED CLASSIFICATION...........................117
4.1.3.1 OUTBAND RELAY N ODE
........................................
117
4.1.3.2 INBAND RELAY NODE
...........................................
117
4.2 SOLUTIONS FOR M2M COMMUNICATION IN LTE-A
..............
118
4.3 RELAY NODE FOR M2M COMMUNICATION
............................
121
4.4 OPNET SIMULATION ENVIRONMENT
....................................
122
4.5 RELAY NODE IMPLEMENTATION
............................................
123
4.5.1 DENODEB SCHEDULING WITH RELAY N ODE..................124
4.5.2 RELAY NODE SCHEDULING
.....................
127
4.5.3 RELAY NODE AGGREGATION AND MULTIPLEXING SCHEME
129
4.6 SIMULATION PARAMETERS, TRAFFIC MODELS AND RESULTS
......
131
4.6.1 COVERAGE ENHANCEMENT WITH RELAY NODE................133
4.6.2 M2M TRAFFIC AGGREGATION AND MULTIPLEXING
.........
140
4.6.3 IMPACT OF M2M RELAYING ON REGULAR TRAFFIC
.........
150
4.7 CONCLUSION
........................................................................
155
5. RESULTS COMPARISON FOR RELAY NODE
........................................
157
5.1 THE ANALYTICAL
MODEL.......................................................158
5.2 THE SIMULATION
MODEL....................................................... 161
5.3 THE SIMPLE SIMULATION MODEL
.........................................
163
5.4 PERFORMANCE
EVALUATION....................................................166
5.4.1 MULTIPLEXING TRANSITION PROBABILITIES AND PATH
PROBABILITIES
...................
167
5.4.2 MULTIPLEXING GAIN AND RADIO RESOURCE UTILIZATION!74
5.5
SUMMARY...............................................................
181
6. CONCLUSION AND
OUTLOOK..........................................................183
6.1 CONCLUSION
........................................................................
183
6.2 OUTLOOK
.............................................................................
185
7.
APPENDIX...................................................................................187
7.1 CONFIDENCE INTERVALS FOR SIMULATION RESULTS....................187
7.2 CONFIDENCE INTERVALS FOR COMPARISON OF SIMULATION AND
ANALYTICAL RESULTS
.......................................................................
191
7.3 3GPP TRANSPORT BLOCK SIZE TABLE
194
|
any_adam_object | 1 |
author | Marwat, Safdar Nawaz Khan |
author_GND | (DE-588)1166908577 |
author_facet | Marwat, Safdar Nawaz Khan |
author_role | aut |
author_sort | Marwat, Safdar Nawaz Khan |
author_variant | s n k m snk snkm |
building | Verbundindex |
bvnumber | BV045385346 |
classification_rvk | ZN 6560 |
ctrlnum | (OCoLC)1080944869 (DE-599)DNB1162456175 |
dewey-full | 621.38456 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.38456 |
dewey-search | 621.38456 |
dewey-sort | 3621.38456 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV045385346 |
illustrated | Illustrated |
indexdate | 2024-12-24T06:59:58Z |
institution | BVB |
institution_GND | (DE-588)1065222521 |
isbn | 9783955380304 3955380300 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-030771723 |
oclc_num | 1080944869 |
open_access_boolean | |
owner | DE-573 |
owner_facet | DE-573 |
physical | 210 Seiten Illustrationen 21 cm, 319 g |
publishDate | 2018 |
publishDateSearch | 2018 |
publishDateSort | 2018 |
publisher | WiSa |
record_format | marc |
spellingShingle | Marwat, Safdar Nawaz Khan Future machine-to-machine communications LTE-A optimization for M2M applications Long Term Evolution Advanced (DE-588)102679028X gnd Basisstation Mobilfunk (DE-588)4538215-3 gnd Netzwerksimulation (DE-588)4428139-0 gnd Machine to Machine (DE-588)1076175724 gnd Luftschnittstelle (DE-588)4728284-8 gnd Relaisstation (DE-588)4224572-2 gnd Paketvermittlung (DE-588)4173101-3 gnd Zellulares Mobilfunksystem (DE-588)4387563-4 gnd Dienstgüte (DE-588)4496068-2 gnd PDCP (DE-588)1071156896 gnd |
subject_GND | (DE-588)102679028X (DE-588)4538215-3 (DE-588)4428139-0 (DE-588)1076175724 (DE-588)4728284-8 (DE-588)4224572-2 (DE-588)4173101-3 (DE-588)4387563-4 (DE-588)4496068-2 (DE-588)1071156896 |
title | Future machine-to-machine communications LTE-A optimization for M2M applications |
title_auth | Future machine-to-machine communications LTE-A optimization for M2M applications |
title_exact_search | Future machine-to-machine communications LTE-A optimization for M2M applications |
title_full | Future machine-to-machine communications LTE-A optimization for M2M applications Safdar Nawaz Khan Marwat |
title_fullStr | Future machine-to-machine communications LTE-A optimization for M2M applications Safdar Nawaz Khan Marwat |
title_full_unstemmed | Future machine-to-machine communications LTE-A optimization for M2M applications Safdar Nawaz Khan Marwat |
title_short | Future machine-to-machine communications |
title_sort | future machine to machine communications lte a optimization for m2m applications |
title_sub | LTE-A optimization for M2M applications |
topic | Long Term Evolution Advanced (DE-588)102679028X gnd Basisstation Mobilfunk (DE-588)4538215-3 gnd Netzwerksimulation (DE-588)4428139-0 gnd Machine to Machine (DE-588)1076175724 gnd Luftschnittstelle (DE-588)4728284-8 gnd Relaisstation (DE-588)4224572-2 gnd Paketvermittlung (DE-588)4173101-3 gnd Zellulares Mobilfunksystem (DE-588)4387563-4 gnd Dienstgüte (DE-588)4496068-2 gnd PDCP (DE-588)1071156896 gnd |
topic_facet | Long Term Evolution Advanced Basisstation Mobilfunk Netzwerksimulation Machine to Machine Luftschnittstelle Relaisstation Paketvermittlung Zellulares Mobilfunksystem Dienstgüte PDCP |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=30ace0cac0914a06b37f5bd840a58d68&prov=M&dok_var=1&dok_ext=htm http://www.ibidemverlag.de http://d-nb.info/1162456175/04 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030771723&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT marwatsafdarnawazkhan futuremachinetomachinecommunicationslteaoptimizationform2mapplications AT wisa futuremachinetomachinecommunicationslteaoptimizationform2mapplications |