Mesh distributed coordination function for efficient wireless mesh networks supporting QoS:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Aachen
Mainz
2007
|
Ausgabe: | 1. Aufl. |
Schriftenreihe: | Aachener Beiträge zur Mobil- und Telekommunikation
54 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Zugl.: Aachen, Techn. Hochsch., Diss., 2007 |
Beschreibung: | IX, 167 S. graph. Darst. |
ISBN: | 3861309335 |
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adam_text | MESH DISTRIBUTED COORDINATION FUNCTION FOR EFFICIENT WIRELESS MESH
NETWORKS SUPPORTING QOS VON DER FAKULTAT FLIR ELEKTROTECHNIK UND
INFORMATIONSTECHNIK DER RHEINISCH-WESTFALISCHEN TECHNISCHEN HOCHSCHULE
AACHEN ZUR ERLANGUNG DES AKADEMISCHEN GRADES EINES DOKTORS DER
INGENIEURWISSENSCHAFTEN GENEHMIGTE DISSERTATION VORGELEGT VON MASTER OF
ENGINEERING RUI ZHAO AUS SICHUAN, CHINA BERICHTER: UNIVERSITATSPROFESSOR
DR.-ING. BERNHARD WALKE UNIVERSITATSPROFESSOR DR. PETRI MAHONEN TAG DER
MUNDLICHEN PRTTFUNG: 23. APRIL 2007 TABLE OF CONTENT 1 INTRODUCTION 1
1.1 AN EMERGING KEY TECHNOLOGY 1 1.2 MOTIVATION AND AREAS OF INTEREST 2
1.3 CONTRIBUTIONS OF THE THESIS 3 1.4 OUTLINE 4 2 WIRELESS MESH NETWORKS
5 2.1 WIRELESS CHANNEL MODEL 5 2.2 PROPERTIES OF MULTI-HOP NETWORKS 9
2.3 DESIGN ISSUES OF MAC PROTOCOLS FOR WMNS 10 2.4 RELATED WORK 12 2.4.1
MAC PROTOCOLS FOR WIRELESS MULTI-HOP NETWORKS 12 2.4.2 DISTRIBUTED
CONTROL MAC PROTOCOLS SUPPORTING QOS 13 2.4.3 IEEE 802 STANDARDIZATION
ACTIVITIES ON THE MULTI-HOP MESH NETWORKING . 14 3 MESH DISTRIBUTED
COORDINATION FUNCTION 16 3.1 GENERAL DESCRIPTION 16 3.1.1 ARCHITECTURE
OF MDCF PROTOCOL STACK : 17 3.1.2 BRIEF DESCRIPTION OF MACP 18 3.1.3
BRIEF DESCRIPTION OF RLCP 19 3.1.4 FRAME MAPPING IN MDCF 19 3.2 MEDIA
ACCESS CONTROL PROTOCOL (MACP) 20 3.2.1 TDMA FRAME AND ENERGY SIGNALS 20
3.2.2 PRIORITIZED CHANNEL ACCESS 23 3.2.2.1 CONTENTION PROCESS 23
3.2.2.2 PP CONTENTION LEVELS (PPCLS) 24 3.2.2.3 FAIR ELIMINATION CHANNEL
ACCESS 26 3.2.2.4 ACCESS PERFORMANCE 26 3.2.3 LINK SETUP AND TCH
RESERVATION 27 3.2.4 TRANSMISSION AND ON-DEMAND TCH TURNAROUND 29 3.2.5
CALMING DOWN HIDDEN MPS IN MESH .31 3.2.6 HANDLING OF EXPOSED MPS AND
CAPTURE 33 3.2.7 PACKET MULTIPLEXING 33 3.2.8 MULTI-HOP OPERATION : 35
3.2.9 TCH RELEASE : 36 3.2.9.1 HANG-ON RELEASE 36 VII 3.2.9.2 FORCED
RELEASE 39 3.2.10 ADAPTATION OF THE NUMBER OF TCHS USED FOR A ONE-HOP
LINK 39 3.2.11 BROADCAST AND MULTICAST .41 3.2.12 MACP PROTOCOL DATA
UNIT (MPDU) TRAINS 42 3.2.13 SYNCHRONIZATION 42 3.2.13.1 INTRODUCTION 42
3.2.13.2 RELATED WORK . 43 3.2.13.3 GENERAL DESCRIPTION OF MTSF AND
DEFINITIONS 44 3.2.13.4 USE OF BEACONS 47 3.2.13.5 THE MTSF FINITE STATE
MACHINE 48 3.2.13.6 ON RECEPTION OF A VALID BEACON. 51 3.2.13.7
SYNCHRONIZATION IN MULTI-HOP NETWORKS 55 3.3 RADIO LINK CONTROL PROTOCOL
(RLCP) 56 3.3.1 SERVICE MODES 56 3.3.1.1 UM 57 3.3.1.2 AM 57 3.3.1.3
ALLOCATION OF SERVICE ENTITIES 58 3.3.2 ERROR CONTROL AND FLOW CONTROL
59 3.3.2.1 GENERAL 59 3.3.2.2 A SR-ARQ PROTOCOL UTILIZING ON-DEMAND-TDD
TCH TURNAROUND ...60 3.3.2.3 DETERMINATION OF KEY ARQ PARAMETERS FOR
SPECIFIC SCENARIOS 62 3.3.3 RLCP TRANSMISSION PROCESSES 64 3.3.3.1
SERVICE LINK SETUP 65 3.3.3.2 DATA DELIVERY 68 3.3.3.3 TCH RESERVATION
REQUEST 68 3.3.3.4 ADAPTATION OF ARQ PARAMETERS DURING OPERATION 68
3.3.4 RADIO RESOURCE CONTROL (RRC) 69 3.3.4.1 RESOURCE REQUEST ....70
3.3.4.2 CALL ADMISSION CONTROL (CAC) 72 3.3.4.3 RESOURCE CONTROL DURING
TRANSMISSION 74 3.3.4.4 FORCED RELEASE OF TCHS 75 3.4 MESH ROUTING AND
SECURITY 76 4 MODELING AND PERFORMANCE ANALYSIS 77 4.1 ELIMINATION
PERFORMANCE 77 4.1.1 BACKGROUND AND MOTIVATION 77 4.1.2 ELIMINATION
PERFORMANCE 78 4.2 ANALYSIS OF TRAFFIC PERFORMANCE IN MESH 81 4.2.1
RELATED WORK 81 4.2.2 SYSTEM MODEL: SCENARIO AND ASSUMPTIONS 81 4.2.3
ANALYTICAL MODEL 83 VLLL 4.2.3.1 INTRODUCTION OF THE MODEL 83 4.2.3.2
PERFORMANCE ANALYSIS OF SINGLE-HOP NETWORK 85 4.2.3.3 PERFORMANCE
ANALYSIS OF MULTI-HOP NETWORK 87 4.2.4 PERFORMANCE RESULTS 89 4.2.4.1
EVALUATION ENVIRONMENT . 89 4.2.4.2 THROUGHPUT AND DELAY PERFORMANCE IN
MESH 89 4.2.5 PERFORMANCE EVALUATION WITH THE ERLANG-C (M/M/N) SYSTEM 96
4.2.5.1 INTRODUCTION 96 4.2.5.2 PERFORMANCE ANALYSIS OF ERLANG-C
NETWORKS 98 4.2.5.3 PERFORMANCE COMPARISON RESULTS 100 5 SIMULATION
PERFORMANCE EVALUATION 103 5.1 SIMULATION TOOL 103 5.1.1 RADIO CHANNEL
MODEL . . 104 5.1.1.1 ERROR MODEL 104 5.1.1.2 MULTI-WALL MULTI-FLOOR
MODEL 104 5.1.2 PHYSICAL LAYER 105 5.1.3 LOCATION & MOBILITY MANAGEMENT
106 5.1.4 MAC LAYER 107 5.1.5 TRANSPORT LAYER , 108 5.1.6 APPLICATION
LAYER 108 5.1.6.1 POISSON TRAFFIC 108 5.1.6.2 VOICE TRAFFIC ,. 109
5.1.6.3 VIDEO CONFERENCE TRAFFIC........ . 109 5.1.6.4 FTPTRAFFIC 110
5.1.6.5 WWW TRAFFIC 110 5.1.6.6 CBR TRAFFIC 110 5.2 SYNCHRONIZATION
PERFORMANCE ILL 5.2.1 SIMULATION SCENARIOS ILL 5.2.2 EVALUATION RESULTS
112 5.2.2.1 TRACE OF GTE OVER TIME 112 5.2.2.2 IMPACT OF PHYSICAL CLOCK
DRIFT RATE ON BEACON INTERVAL 113 5.2.2.3 IMPACT OF NETWORK SIZE 114
5.2.2.4 IMPACT OF MAXIMUM BEACON TRANSMISSION RANGE 115 5.3 PERFORMANCE
OF MDCF NETWORKS : 116 5.3.1 IMPORTANT SETTINGS AND SIMULATION SCENARIOS
116 5.3.2 PERFORMANCE IN SINGLE HOP NETWORKS 118 5.3.2.1 SYSTEM
EFFICIENCY 118 5.3.2.2 SATURATION THROUGHPUT UNDER MULTIPLE COMPETING
STATIONS 121 5.3.3 PERFORMANCE IN MULTI HOP NETWORKS 122 5.3.3.1
FUNDAMENTAL STUDY 122 5.3.3.2 HIGHLY INTERFERENCE-PRONE MULTI-HOP
ENVIRONMENT &. 129 IX 5.3.3.3 PACKET MULTIPLEXING 131 5.3.4 QOS
PERFORMANCE IN SINGLE-HOP NETWORKS WITH BACKGROUND TRAFFIC 132 5.3.4.1
IMPACT OF NUMBER OF CONCURRENT VIDEO FLOWS 132 5.3.4.2 IMPACT OF NUMBER
OF CONCURRENT VOICE FLOWS 134 5.4 PERFORMANCE OF MDCF BASED ESS MESH
NETWORKS 137 5.4.1 OPEN SPACE SCENARIO 138 5.4.1.1 SUPPORTED NUMBER OF
HOMOGENOUS REAL-TIME FLOWS IN PARALLEL 138 5.4.1.2 CAPABILITY OF
HANDLING MIXED TRAFFIC SERVICES IN MESH 140 5.4.2 INDOOR OFFICE SCENARIO
140 5.4.2.1 IMPACT OF THE NUMBER OF CONCURRENT VIDEO FLOWS 142 5.4.2.2
IMPACT OF THE NUMBER OF WWW FLOWS CONCURRENT TO VOICE AND VIDEO TRAFFIC
145 5.4.2.3 DELAY PERFORMANCE UNDER A HIGHLY LOADED MESH 145 6
CONCLUSIONS AND OUTLOOK. 147 7 TABLE OF SYMBOLS 149 8 LIST OF
ABBREVIATIONS 156 9 REFERENCES , 160 10 ACKNOWLEDGMENT 168 11 CURRICULUM
VITAE , 169
|
adam_txt |
MESH DISTRIBUTED COORDINATION FUNCTION FOR EFFICIENT WIRELESS MESH
NETWORKS SUPPORTING QOS VON DER FAKULTAT FLIR ELEKTROTECHNIK UND
INFORMATIONSTECHNIK DER RHEINISCH-WESTFALISCHEN TECHNISCHEN HOCHSCHULE
AACHEN ZUR ERLANGUNG DES AKADEMISCHEN GRADES EINES DOKTORS DER
INGENIEURWISSENSCHAFTEN GENEHMIGTE DISSERTATION VORGELEGT VON MASTER OF
ENGINEERING RUI ZHAO AUS SICHUAN, CHINA BERICHTER: UNIVERSITATSPROFESSOR
DR.-ING. BERNHARD WALKE UNIVERSITATSPROFESSOR DR. PETRI MAHONEN TAG DER
MUNDLICHEN PRTTFUNG: 23. APRIL 2007 TABLE OF CONTENT 1 INTRODUCTION 1
1.1 AN EMERGING KEY TECHNOLOGY 1 1.2 MOTIVATION AND AREAS OF INTEREST 2
1.3 CONTRIBUTIONS OF THE THESIS 3 1.4 OUTLINE 4 2 WIRELESS MESH NETWORKS
5 2.1 WIRELESS CHANNEL MODEL 5 2.2 PROPERTIES OF MULTI-HOP NETWORKS 9
2.3 DESIGN ISSUES OF MAC PROTOCOLS FOR WMNS 10 2.4 RELATED WORK 12 2.4.1
MAC PROTOCOLS FOR WIRELESS MULTI-HOP NETWORKS 12 2.4.2 DISTRIBUTED
CONTROL MAC PROTOCOLS SUPPORTING QOS 13 2.4.3 IEEE 802 STANDARDIZATION
ACTIVITIES ON THE MULTI-HOP MESH NETWORKING . 14 3 MESH DISTRIBUTED
COORDINATION FUNCTION 16 3.1 GENERAL DESCRIPTION 16 3.1.1 ARCHITECTURE
OF MDCF PROTOCOL STACK : 17 3.1.2 BRIEF DESCRIPTION OF MACP 18 3.1.3
BRIEF DESCRIPTION OF RLCP 19 3.1.4 FRAME MAPPING IN MDCF 19 3.2 MEDIA
ACCESS CONTROL PROTOCOL (MACP) 20 3.2.1 TDMA FRAME AND ENERGY SIGNALS 20
3.2.2 PRIORITIZED CHANNEL ACCESS 23 3.2.2.1 CONTENTION PROCESS 23
3.2.2.2 PP CONTENTION LEVELS (PPCLS) 24 3.2.2.3 FAIR ELIMINATION CHANNEL
ACCESS 26 3.2.2.4 ACCESS PERFORMANCE 26 3.2.3 LINK SETUP AND TCH
RESERVATION 27 3.2.4 TRANSMISSION AND ON-DEMAND TCH TURNAROUND 29 3.2.5
CALMING DOWN HIDDEN MPS IN MESH .31 3.2.6 HANDLING OF EXPOSED MPS AND
CAPTURE 33 3.2.7 PACKET MULTIPLEXING 33 3.2.8 MULTI-HOP OPERATION : 35
3.2.9 TCH RELEASE : 36 3.2.9.1 HANG-ON RELEASE 36 VII 3.2.9.2 FORCED
RELEASE 39 3.2.10 ADAPTATION OF THE NUMBER OF TCHS USED FOR A ONE-HOP
LINK 39 3.2.11 BROADCAST AND MULTICAST .41 3.2.12 MACP PROTOCOL DATA
UNIT (MPDU) TRAINS 42 3.2.13 SYNCHRONIZATION 42 3.2.13.1 INTRODUCTION 42
3.2.13.2 RELATED WORK '. 43 3.2.13.3 GENERAL DESCRIPTION OF MTSF AND
DEFINITIONS 44 3.2.13.4 USE OF BEACONS 47 3.2.13.5 THE MTSF FINITE STATE
MACHINE 48 3.2.13.6 ON RECEPTION OF A VALID BEACON. 51 3.2.13.7
SYNCHRONIZATION IN MULTI-HOP NETWORKS 55 3.3 RADIO LINK CONTROL PROTOCOL
(RLCP) 56 3.3.1 SERVICE MODES 56 3.3.1.1 UM 57 3.3.1.2 AM 57 3.3.1.3
ALLOCATION OF SERVICE ENTITIES 58 3.3.2 ERROR CONTROL AND FLOW CONTROL
59 3.3.2.1 GENERAL 59 3.3.2.2 A SR-ARQ PROTOCOL UTILIZING ON-DEMAND-TDD
TCH TURNAROUND .60 3.3.2.3 DETERMINATION OF KEY ARQ PARAMETERS FOR
SPECIFIC SCENARIOS 62 3.3.3 RLCP TRANSMISSION PROCESSES 64 3.3.3.1
SERVICE LINK SETUP 65 3.3.3.2 DATA DELIVERY 68 3.3.3.3 TCH RESERVATION
REQUEST 68 3.3.3.4 ADAPTATION OF ARQ PARAMETERS DURING OPERATION 68
3.3.4 RADIO RESOURCE CONTROL (RRC) 69 3.3.4.1 RESOURCE REQUEST .70
3.3.4.2 CALL ADMISSION CONTROL (CAC) 72 3.3.4.3 RESOURCE CONTROL DURING
TRANSMISSION 74 3.3.4.4 FORCED RELEASE OF TCHS 75 3.4 MESH ROUTING AND
SECURITY 76 4 MODELING AND PERFORMANCE ANALYSIS 77 4.1 ELIMINATION
PERFORMANCE 77 4.1.1 BACKGROUND AND MOTIVATION 77 4.1.2 ELIMINATION
PERFORMANCE 78 4.2 ANALYSIS OF TRAFFIC PERFORMANCE IN MESH 81 4.2.1
RELATED WORK 81 4.2.2 SYSTEM MODEL: SCENARIO AND ASSUMPTIONS 81 4.2.3
ANALYTICAL MODEL 83 VLLL 4.2.3.1 INTRODUCTION OF THE MODEL 83 4.2.3.2
PERFORMANCE ANALYSIS OF SINGLE-HOP NETWORK 85 4.2.3.3 PERFORMANCE
ANALYSIS OF MULTI-HOP NETWORK 87 4.2.4 PERFORMANCE RESULTS 89 4.2.4.1
EVALUATION ENVIRONMENT '. 89 4.2.4.2 THROUGHPUT AND DELAY PERFORMANCE IN
MESH 89 4.2.5 PERFORMANCE EVALUATION WITH THE ERLANG-C (M/M/N) SYSTEM 96
4.2.5.1 INTRODUCTION 96 4.2.5.2 PERFORMANCE ANALYSIS OF ERLANG-C
NETWORKS 98 4.2.5.3 PERFORMANCE COMPARISON RESULTS 100 5 SIMULATION
PERFORMANCE EVALUATION 103 5.1 SIMULATION TOOL 103 5.1.1 RADIO CHANNEL
MODEL '.'. 104 5.1.1.1 ERROR MODEL 104 5.1.1.2 MULTI-WALL MULTI-FLOOR
MODEL 104 5.1.2 PHYSICAL LAYER 105 5.1.3 LOCATION & MOBILITY MANAGEMENT
106 5.1.4 MAC LAYER 107 5.1.5 TRANSPORT LAYER , 108 5.1.6 APPLICATION
LAYER 108 5.1.6.1 POISSON TRAFFIC 108 5.1.6.2 VOICE TRAFFIC ,. 109
5.1.6.3 VIDEO CONFERENCE TRAFFIC. '. 109 5.1.6.4 FTPTRAFFIC 110
5.1.6.5 WWW TRAFFIC 110 5.1.6.6 CBR TRAFFIC 110 5.2 SYNCHRONIZATION
PERFORMANCE ILL 5.2.1 SIMULATION SCENARIOS ILL 5.2.2 EVALUATION RESULTS
112 5.2.2.1 TRACE OF GTE OVER TIME 112 5.2.2.2 IMPACT OF PHYSICAL CLOCK
DRIFT RATE ON BEACON INTERVAL 113 5.2.2.3 IMPACT OF NETWORK SIZE 114
5.2.2.4 IMPACT OF MAXIMUM BEACON TRANSMISSION RANGE 115 5.3 PERFORMANCE
OF MDCF NETWORKS : 116 5.3.1 IMPORTANT SETTINGS AND SIMULATION SCENARIOS
116 5.3.2 PERFORMANCE IN SINGLE HOP NETWORKS 118 5.3.2.1 SYSTEM
EFFICIENCY 118 5.3.2.2 SATURATION THROUGHPUT UNDER MULTIPLE COMPETING
STATIONS 121 5.3.3 PERFORMANCE IN MULTI HOP NETWORKS 122 5.3.3.1
FUNDAMENTAL STUDY 122 5.3.3.2 HIGHLY INTERFERENCE-PRONE MULTI-HOP
ENVIRONMENT &. 129 IX 5.3.3.3 PACKET MULTIPLEXING 131 5.3.4 QOS
PERFORMANCE IN SINGLE-HOP NETWORKS WITH BACKGROUND TRAFFIC 132 5.3.4.1
IMPACT OF NUMBER OF CONCURRENT VIDEO FLOWS 132 5.3.4.2 IMPACT OF NUMBER
OF CONCURRENT VOICE FLOWS 134 5.4 PERFORMANCE OF MDCF BASED ESS MESH
NETWORKS 137 5.4.1 OPEN SPACE SCENARIO 138 5.4.1.1 SUPPORTED NUMBER OF
HOMOGENOUS REAL-TIME FLOWS IN PARALLEL 138 5.4.1.2 CAPABILITY OF
HANDLING MIXED TRAFFIC SERVICES IN MESH 140 5.4.2 INDOOR OFFICE SCENARIO
140 5.4.2.1 IMPACT OF THE NUMBER OF CONCURRENT VIDEO FLOWS 142 5.4.2.2
IMPACT OF THE NUMBER OF WWW FLOWS CONCURRENT TO VOICE AND VIDEO TRAFFIC
145 5.4.2.3 DELAY PERFORMANCE UNDER A HIGHLY LOADED MESH 145 6
CONCLUSIONS AND OUTLOOK. 147 7 TABLE OF SYMBOLS 149 8 LIST OF
ABBREVIATIONS 156 9 REFERENCES , 160 10 ACKNOWLEDGMENT 168 11 CURRICULUM
VITAE , 169 |
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any_adam_object_boolean | 1 |
author | Zhao, Rui |
author_facet | Zhao, Rui |
author_role | aut |
author_sort | Zhao, Rui |
author_variant | r z rz |
building | Verbundindex |
bvnumber | BV022945320 |
ctrlnum | (OCoLC)184996255 (DE-599)BVBBV022945320 |
dewey-full | 621.3840285424 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.3840285424 |
dewey-search | 621.3840285424 |
dewey-sort | 3621.3840285424 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 1. Aufl. |
format | Book |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
id | DE-604.BV022945320 |
illustrated | Illustrated |
index_date | 2024-07-02T18:59:32Z |
indexdate | 2024-07-09T21:08:16Z |
institution | BVB |
isbn | 3861309335 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016149899 |
oclc_num | 184996255 |
open_access_boolean | |
owner | DE-91 DE-BY-TUM |
owner_facet | DE-91 DE-BY-TUM |
physical | IX, 167 S. graph. Darst. |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | Mainz |
record_format | marc |
series | Aachener Beiträge zur Mobil- und Telekommunikation |
series2 | Aachener Beiträge zur Mobil- und Telekommunikation |
spelling | Zhao, Rui Verfasser aut Mesh distributed coordination function for efficient wireless mesh networks supporting QoS Rui Zhao 1. Aufl. Aachen Mainz 2007 IX, 167 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Aachener Beiträge zur Mobil- und Telekommunikation 54 Zugl.: Aachen, Techn. Hochsch., Diss., 2007 Dienstgüte (DE-588)4496068-2 gnd rswk-swf Ad-hoc-Netz (DE-588)4674811-8 gnd rswk-swf Zugangsverfahren (DE-588)4284316-9 gnd rswk-swf Hop Vermittlungstechnik (DE-588)4737485-8 gnd rswk-swf Leistungsbewertung (DE-588)4167271-9 gnd rswk-swf Betriebsmittelverwaltung (DE-588)4417917-0 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Ad-hoc-Netz (DE-588)4674811-8 s Zugangsverfahren (DE-588)4284316-9 s Leistungsbewertung (DE-588)4167271-9 s Hop Vermittlungstechnik (DE-588)4737485-8 s Betriebsmittelverwaltung (DE-588)4417917-0 s Dienstgüte (DE-588)4496068-2 s DE-604 Aachener Beiträge zur Mobil- und Telekommunikation 54 (DE-604)BV010184409 54 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016149899&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Zhao, Rui Mesh distributed coordination function for efficient wireless mesh networks supporting QoS Aachener Beiträge zur Mobil- und Telekommunikation Dienstgüte (DE-588)4496068-2 gnd Ad-hoc-Netz (DE-588)4674811-8 gnd Zugangsverfahren (DE-588)4284316-9 gnd Hop Vermittlungstechnik (DE-588)4737485-8 gnd Leistungsbewertung (DE-588)4167271-9 gnd Betriebsmittelverwaltung (DE-588)4417917-0 gnd |
subject_GND | (DE-588)4496068-2 (DE-588)4674811-8 (DE-588)4284316-9 (DE-588)4737485-8 (DE-588)4167271-9 (DE-588)4417917-0 (DE-588)4113937-9 |
title | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS |
title_auth | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS |
title_exact_search | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS |
title_exact_search_txtP | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS |
title_full | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS Rui Zhao |
title_fullStr | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS Rui Zhao |
title_full_unstemmed | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS Rui Zhao |
title_short | Mesh distributed coordination function for efficient wireless mesh networks supporting QoS |
title_sort | mesh distributed coordination function for efficient wireless mesh networks supporting qos |
topic | Dienstgüte (DE-588)4496068-2 gnd Ad-hoc-Netz (DE-588)4674811-8 gnd Zugangsverfahren (DE-588)4284316-9 gnd Hop Vermittlungstechnik (DE-588)4737485-8 gnd Leistungsbewertung (DE-588)4167271-9 gnd Betriebsmittelverwaltung (DE-588)4417917-0 gnd |
topic_facet | Dienstgüte Ad-hoc-Netz Zugangsverfahren Hop Vermittlungstechnik Leistungsbewertung Betriebsmittelverwaltung Hochschulschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016149899&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV010184409 |
work_keys_str_mv | AT zhaorui meshdistributedcoordinationfunctionforefficientwirelessmeshnetworkssupportingqos |