Protocols and architectures for wireless sensor networks:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Chichester [u.a.]
Wiley
2006
|
Ausgabe: | Reprinted with corr. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXV, 497 S. Ill., graph. Darst. |
ISBN: | 0470095105 |
Internformat
MARC
LEADER | 00000nam a2200000zc 4500 | ||
---|---|---|---|
001 | BV023892881 | ||
003 | DE-604 | ||
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100 | 1 | |a Karl, Holger |e Verfasser |4 aut | |
245 | 1 | 0 | |a Protocols and architectures for wireless sensor networks |c Holger Karl ; Andreas Willig |
250 | |a Reprinted with corr. | ||
264 | 1 | |a Chichester [u.a.] |b Wiley |c 2006 | |
300 | |a XXV, 497 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Sensor - Kommunikationsprotokoll - Architektur <Informatik> - Funknetz | |
650 | 4 | |a Sensor networks | |
650 | 4 | |a Wireless LANs | |
650 | 0 | 7 | |a Kommunikationsprotokoll |0 (DE-588)4128252-8 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Sensor |0 (DE-588)4038824-4 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Drahtloses Sensorsystem |0 (DE-588)4789222-5 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Drahtloses lokales Netz |0 (DE-588)4633975-9 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Funknetz |0 (DE-588)4216130-7 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Messwertverarbeitung |0 (DE-588)4038804-9 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Architektur |g Informatik |0 (DE-588)4139374-0 |2 gnd |9 rswk-swf |
689 | 0 | 0 | |a Sensor |0 (DE-588)4038824-4 |D s |
689 | 0 | 1 | |a Kommunikationsprotokoll |0 (DE-588)4128252-8 |D s |
689 | 0 | 2 | |a Architektur |g Informatik |0 (DE-588)4139374-0 |D s |
689 | 0 | 3 | |a Funknetz |0 (DE-588)4216130-7 |D s |
689 | 0 | 4 | |a Drahtloses Sensorsystem |0 (DE-588)4789222-5 |D s |
689 | 0 | 5 | |a Messwertverarbeitung |0 (DE-588)4038804-9 |D s |
689 | 0 | 6 | |a Drahtloses lokales Netz |0 (DE-588)4633975-9 |D s |
689 | 0 | |8 1\p |5 DE-604 | |
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856 | 4 | 2 | |m Digitalisierung UB Passau |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017535104&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-017535104 | ||
883 | 1 | |8 1\p |a cgwrk |d 20201028 |q DE-101 |u https://d-nb.info/provenance/plan#cgwrk |
Datensatz im Suchindex
_version_ | 1804139088611115008 |
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adam_text | Contents
Preface
xiii
List of abbreviations
xv
A guide to the book
xxiii
1
Introduction
1
1.1
The vision of Ambient Intelligence
1
1.2
Application examples
3
1.3
Types of applications
6
1.4
Challenges for WSNs
7
1.4.1
Characteristic requirements
7
1.4.2
Required mechanisms
9
1.5
Why are sensor networks different?
10
1.5.1
Mobile ad hoc networks and wireless sensor networks
10
1.5.2
Fieldbuses and wireless sensor networks
12
1.6
Enabling technologies for wireless sensor networks
13
PART I ARCHITECTURES
15
2
Single-node architecture
17
2.1
Hardware components
18
2.1.1
Sensor node hardware overview
18
2.1.2
Controller
19
2.1.3
Memory
21
2.1.4
Communication device
21
2.1.5
Sensors and actuators
31
2.1.6
Power supply of sensor nodes
32
2.2
Energy consumption of sensor nodes
36
2.2.1
Operation states with different power consumption
36
2.2.2
Microcontroller energy consumption
38
2.2.3
Memoiy
39
2.2.4
Radio transceivers
40
2.2.5
Relationship between computation and communication
44
2.2.6
Power consumption of sensor and actuators AA
2.3
Operating systems and execution environments
45
2.3.1
Embedded operating systems
45
2.3.2
Programming paradigms and application programming interfaces
45
2.3.3
Structure of operating system and protocol stack
47
2.3.4
Dynamic energy and power management
48
2.3.5
Case Study: Tiny OS and nesC
50
2.3.6
Other examples
53
2.4
Some examples of sensor nodes
54
2.4.1
The Mica Mote family
54
2.4.2
EYES nodes
54
2.4.3
BTnodes
54
2.4.4
Scatterweb
54
2.4.5
Commercial solutions
55
2.5
Conclusion
56
3
Network architecture
59
ЗЛ
Sensor network scenarios
60
3.1.1
Types of sources and sinks
60
3.1.2
Single-hop versus multihop networks
60
3.1.3
Multiple sinks and sources
62
3.1.4
Three types of mobility
62
3.2
Optimization goals and figures of merit
63
3.2.1
Quality of service
64
3.2.2
Energy efficiency
65
3.2.3
Scalability
66
3.2.4
Robustness
67
3.3
Design principles for WSNs
67
3.3.1
Distributed organization
67
3.3.2
In-network processing
67
3.3.3
Adaptive fidelity and accuracy
70
3.3.4
Data centricity
70
3.3.5
Exploit location information
73
3.3.6
Exploit activity patterns
73
3.3.7
Exploit heterogeneity
73
3.3.8
Component-based protocol stacks and cross-layer optimization
74
3.4
Service interfaces of WSNs
74
3.4.1
Structuring application/protocol stack interfaces
74
3.4.2
Expressibility requirements for
W
SN service interfaces
76
3.4.3
Discussion
77
3.5
Gateway concepts
78
3.5.1
The need for gateways
78
3.5.2
WSN to Internet communication
79
3.5.3
Internet to WSN communication
80
3.5.4
WSN tunneling
81
3.6
Conclusion
81
PART II COMMUNICATION PROTOCOLS
83
4
Physical layer
85
4.1
Introduction
85
4.2
Wireless channel and communication fundamentals
86
4.2.1
Frequency allocation
86
4.2.2
Modulation and demodulation
88
4.2.3
Wave propagation effects and noise
90
4.2.4
Channel models
96
4.2.5
Spread-spectrum communications
98
4.2.6
Packet transmission and synchronization
100
4.2.7
Quality of wireless channels and measures for improvement
102
4.3
Physical layer and transceiver design considerations in WSNs
103
4.3.1
Energy usage profile
103
4.3.2
Choice of modulation scheme
104
4.3.3
Dynamic modulation scaling
108
4.3.4
Antenna considerations
108
4.4
Further reading
109
5
MAC protocols 111
5.1
Fundamentals of (wireless) MAC protocols
112
5.7.7
Requirements and design constraints for wireless MAC protocols
112
5.7.2
Important classes of MAC protocols
114
5.1.3
MAC protocols for wireless sensor networks
119
5.2
Low duty cycle protocols and wakeup concepts
120
5.2.7
Sparse topology and energy management (STEM)
121
5.2.2
S-MAC
123
5.2.3
The mediation device protocol
126
5.2.4
Wakeup radio concepts
127
5.2.5
Further reading
128
5.3
Contention-based protocols
129
5.3.1
CSMA protocols
129
5.3.2
PAMAS
131
5.3.3
Further solutions
132
5.4
Schedule-based protocols
133
5.4.7
LEACH
133
5.4.2
SMACS
135
5.4.3
Traffic-adaptive medium access protocol
(TRAMA)
137
5.4.4
Further solutions
139
5.5
The IEEE
802.15.4
MAC protocol
139
140
141
141
142
142
144
145
145
146
148
5.5.7
Network architecture and types/roles of nodes
5.5.2
Supeiframe structure
5.5.3
GTS management
5.5.4
Data transfer procedures
5.5.5
Slotted CSMA-CA protocol
5.5.6
Nonbeaconed mode
5.5.7
Further reading
5.6
How about IEEE
802.11
and bluetooth?
5.7
Further reading
5.8
Conclusion
6.1
Fundamentals: tasks and requirements
6.2
Error
control
6.2.1
Causes and characteristics of transmission errors
6.2.2
ARQ techniques
6.2.3
FEC techniques
6.2.4
Hybrid schemes
6.2.5
Power control
6.2.6
Further mechanisms to combat errors
6.2.7
Error control: summary
6.3
Framing
6.3.1
Adaptive schemes
6.3.2
Intermediate checksum schemes
6.3.3
Combining packet-size optimization and FEC
6.3.4
Treatment of frame headers
6.3.5
Framing: summary
6.4
Link
management
6.4.1
Link-quality characteristics
6.4.2
Link-quality estimation
6.5
Summary
6
Link-layer protocols
149
150
151
151
152
158
163
165
166
167
167
170
172
173
174
174
174
175
177
179
7
Naming and addressing
181
7.1
Fundamentals
182
7.1.1
Use of addresses and names in (sensor) networks
182
7.1.2
Address management tasks
183
7.1.3
Uniqueness of addresses
184
7.1.4
Address allocation and assignment
184
7.1.5
Addressing overhead
185
7.2
Address and name management in wireless sensor networks
186
7.3
Assignment of MAC addresses
186
7.3.1
Distributed assignment of networkwide addresses
187
7.4
Distributed assignment of locally unique addresses
189
7.4.1
Address assignment algorithm
189
7.4.2
Address selection and representation
191
7.4.3
Further schemes
194
7.5
Content-based and geographic addressing
194
7.5.1
Content-based addressing
194
7.5.2
Geographic addressing
198
7.6
Summary
198
8
Time synchronization
201
8.1
Introduction to the time synchronization problem
201
8.1.1
The need for time synchronization in wireless sensor networks
202
8.1.2
Node clocks and the problem of accuracy
203
8.1.3
Properties and structure of time synchronization algorithms
204
8.1.4
Time synchronization in wireless sensor networks
206
8.2
Protocols based on sender/receiver synchronization
207
8.2.1
Lightweight time synchronization protocol
(LTS)
207
8.2.2
How to increase accuracy and estimate drift
8.2.3
Timing-sync protocol for sensor networks (TPSN)
8.3
Protocols based on receiver/receiver synchronization
8.3.1
Reference broadcast synchronization (RBS)
8.3.2
Hierarchy referencing time synchronization (HRTS)
8.4
Further reading
9
Localization and positioning
9.1
Properties of localization and positioning procedures
9.2
Possible approaches
9.2.1
Proximity
9.2.2
Trilateration and
triangulation
9.2.3
Scene analysis
9.3
Mathematical basics for the lateration problem
9.3.1
Solution with three anchors and correct distance values
9.3.2
Solving with distance errors
9.4
Single-hop localization
9.4.1
Active Badge
9.4.2
Active office
9.4.3
RADAR
9.4.4
Cricket
9.4.5
Overlapping connectivity
9.4.6
Approximate point in triangle
9.4.7
Using angle of arrival information
9.5
Positioning in multihop environments
9.5.1
Connectivity in a multihop network
9.5.2
Multihop range estimation
9.5.3
Iterative and collaborative
mutilate
ration
9.5.4
Probabilistic positioning description and propagation
9.6
Impact of anchor placement
9.7
Further reading
9.8
Conclusion
10
Topology control
10.1
Motivation and basic ideas
10.1.1
Options for topology control
10.1.2
Aspects of topology-control algorithms
10.2
Controlling topology in flat networks
-
Power control
10.2.1
Some complexity results
10.2.2
Are there magic numbers?
-
bounds on critical parameters
10.2.3
Some example constructions and protocols
10.2.4
Further reading on flat topology control
10.3
Hierarchical networks by dominating sets
10.3.1
Motivation and definition
10.3.2
A hardness result
10.3.3
Some ideas from centralized algorithms
10.3.4
Some distributed approximations
10.3.5
Further reading
10.4
Hierarchical networks by clustering
10.4.1 Definition
of clusters
21
A
10.4.2
A basic idea to construct independent sets
277
10.4.3
A generalization and some performance insights
278
10.4.4
Connecting clusters
278
10.4.5
Rotating clusterheads
279
10.4.6
Some more algorithm examples
280
10.4.7
Multihop clusters
281
10.4.8
Multiple layers of clustering
283
10.4.9
Passive clustering
284
10.4.10
Further reading
284
10.5
Combining hierarchical topologies and power control
285
10.5.1
Pilot-based power control
285
10.5.2
Ad hoc Network Design Algorithm
(ANDA)
285
10.5.3
CLUSTERPOW
286
10.6
Adaptive node activity
286
10.6.1
Geographic Adaptive Fidelity
(GAF)
286
70.6.2
Adaptive Self-Configuring sEnsor Networks Topologies (ASCENT)
287
10.6.3
Turning off nodes on the basis of sensing coverage
288
10.7
Conclusions
288
11
Routing protocols
289
11.1
The many faces of forwarding and routing
289
11.2
Gossiping and agent-based unicast forwarding
292
11.2.1
Basic idea
292
11.2.2
Randomized forwarding
292
11.2.3
Random walks
293
11.2.4
Further reading
294
11.3
Energy-efficient unicast
295
11.3.1
Overview
295
11.3.2
Some example unicast protocols
297
11.3.3
Further reading
301
11.3.4
Multipath unicast routing
301
11.3.5
Further reading
304
11.4
Broadcast and multicast
305
11.4.1
Overview
305
11.4.2
Source-based tree protocols
308
11.4.3
Shared, core-based tree protocols
314
11.4.4
Mesh-based protocols
314
11.4.5
Further reading on broadcast and multicast
315
11.5
Geographic routing
316
11.5.1
Basics of position-based routing
316
11.5.2
Geocasting
323
11.5.3
Further reading on geographic routing
326
11.6
Mobilenodes
328
11.6.1
Mobile sinks
328
11.6.2
Mobile data collectors
328
11.6.3
Mobile regions
329
11.7
Conclusions
329
12
Data-centric and content-based networking
331
12.1
Introduction
331
12.1.1
The publish/subscribe interaction paradigm
331
12.1.2
Addressing data
332
12.1.3
Implementation options
333
12.1.4
Distribution versus gathering of data
-
In-network processing
334
12.2
Data-centric routing
335
12.2.1
One-shot interactions
335
12.2.2
Repeated interactions
337
12.2.3
Further reading
340
12.3
Data aggregation
341
12.3.1
Overview
341
12.3.2
A database interface to describe aggregation operations
342
12.3.3
Categories of aggregation operations
343
12.3.4
Placement of aggregation points
345
12.3.5
When to stop waiting for more data
345
12.3.6
Aggregation as an optimization problem
347
12.3.7
Broadcasting an aggregated value
347
12.3.8
Information-directed routing and aggregation
350
12.3.9
Some further examples
352
12.3.10
Further reading on data aggregation
355
12.4
Data-centric storage
355
12.5
Conclusions
357
13
Transport layer and quality of service
359
13.1
The transport layer and QoS in wireless sensor networks
359
13.1.1
Quality of service/reliability
360
13.1.2
Transport protocols
361
13.2
Coverage and deployment
362
13.2.1
Sensing models
362
13.2.2
Coverage measures
364
13.2.3
Uniform random deployments:
Poisson
point processes
365
13.2.4
Coverage of random deployments: Boolean sensing model
366
13.2.5
Coverage of random deployments: general sensing model
368
13.2.6
Coverage determination
369
13.2.7
Coverage of grid deployments
374
13.2.8
Further reading
375
13.3
Reliable data transport
376
13.3.1
Reliability requirements in sensor networks
377
13.4
Single packet delivery
378
13.4.1
Using a single path
379
13.4.2
Using multiple paths
384
13.4.3
Multiple receivers
388
13.4.4
Summan·
389
13.5
Block delivery
389
13.5.1
PSFQ: block delivety in the sink-to-sensors case
389
13.5.2
RMST: block delivery in the sensors-to-sink case
395
13.5.3
What about TCP?
397
13.5.4
Further reading
399
13.6
Congestion
control
and rate control
400
13.6.1
Congestion situations in sensor networks
400
13.6.2
Mechanisms for congestion detection and handling
402
13.6.3
Protocols with rate control
403
13.6.4
The CODA congestion-control framework
408
13.6.5
Further reading
411
14
Advanced application support
413
14.1
Advanced in-network processing
413
14.1.1
Going beyond mere aggregation of data
413
14.1.2
Distributed signal processing
414
14.1.3
Distributed source coding
416
14.1.4
Network coding
420
14.1.5
Further issues
421
14.2
Security
422
14.2.1
Fundamentals
422
14.2.2
Security considerations in wireless sensor networks
423
14.2.3
Denial-of-service attacks
423
14.2.4
Further reading
425
14.3
Application-specific support
425
14.3.1
Target detection and tracking
426
14.3.2
Contour/edge detection
429
14.3.3
Field sampling
432
Bibliography
437
Index
481
|
any_adam_object | 1 |
author | Karl, Holger Willig, Andreas |
author_GND | (DE-588)123921619 |
author_facet | Karl, Holger Willig, Andreas |
author_role | aut aut |
author_sort | Karl, Holger |
author_variant | h k hk a w aw |
building | Verbundindex |
bvnumber | BV023892881 |
callnumber-first | T - Technology |
callnumber-label | TK7872 |
callnumber-raw | TK7872.D48 |
callnumber-search | TK7872.D48 |
callnumber-sort | TK 47872 D48 |
callnumber-subject | TK - Electrical and Nuclear Engineering |
classification_rvk | ST 200 ZQ 3124 |
ctrlnum | (OCoLC)253959574 (DE-599)BVBBV023892881 |
dewey-full | 681.2 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 681 - Precision instruments and other devices |
dewey-raw | 681.2 |
dewey-search | 681.2 |
dewey-sort | 3681.2 |
dewey-tens | 680 - Manufacture of products for specific uses |
discipline | Handwerk und Gewerbe / Verschiedene Technologien Informatik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
edition | Reprinted with corr. |
format | Book |
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id | DE-604.BV023892881 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:38:31Z |
institution | BVB |
isbn | 0470095105 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017535104 |
oclc_num | 253959574 |
open_access_boolean | |
owner | DE-634 DE-739 DE-11 |
owner_facet | DE-634 DE-739 DE-11 |
physical | XXV, 497 S. Ill., graph. Darst. |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | Wiley |
record_format | marc |
spelling | Karl, Holger Verfasser aut Protocols and architectures for wireless sensor networks Holger Karl ; Andreas Willig Reprinted with corr. Chichester [u.a.] Wiley 2006 XXV, 497 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Sensor - Kommunikationsprotokoll - Architektur <Informatik> - Funknetz Sensor networks Wireless LANs Kommunikationsprotokoll (DE-588)4128252-8 gnd rswk-swf Sensor (DE-588)4038824-4 gnd rswk-swf Drahtloses Sensorsystem (DE-588)4789222-5 gnd rswk-swf Drahtloses lokales Netz (DE-588)4633975-9 gnd rswk-swf Funknetz (DE-588)4216130-7 gnd rswk-swf Messwertverarbeitung (DE-588)4038804-9 gnd rswk-swf Architektur Informatik (DE-588)4139374-0 gnd rswk-swf Sensor (DE-588)4038824-4 s Kommunikationsprotokoll (DE-588)4128252-8 s Architektur Informatik (DE-588)4139374-0 s Funknetz (DE-588)4216130-7 s Drahtloses Sensorsystem (DE-588)4789222-5 s Messwertverarbeitung (DE-588)4038804-9 s Drahtloses lokales Netz (DE-588)4633975-9 s 1\p DE-604 Willig, Andreas Verfasser (DE-588)123921619 aut Digitalisierung UB Passau application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017535104&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Karl, Holger Willig, Andreas Protocols and architectures for wireless sensor networks Sensor - Kommunikationsprotokoll - Architektur <Informatik> - Funknetz Sensor networks Wireless LANs Kommunikationsprotokoll (DE-588)4128252-8 gnd Sensor (DE-588)4038824-4 gnd Drahtloses Sensorsystem (DE-588)4789222-5 gnd Drahtloses lokales Netz (DE-588)4633975-9 gnd Funknetz (DE-588)4216130-7 gnd Messwertverarbeitung (DE-588)4038804-9 gnd Architektur Informatik (DE-588)4139374-0 gnd |
subject_GND | (DE-588)4128252-8 (DE-588)4038824-4 (DE-588)4789222-5 (DE-588)4633975-9 (DE-588)4216130-7 (DE-588)4038804-9 (DE-588)4139374-0 |
title | Protocols and architectures for wireless sensor networks |
title_auth | Protocols and architectures for wireless sensor networks |
title_exact_search | Protocols and architectures for wireless sensor networks |
title_full | Protocols and architectures for wireless sensor networks Holger Karl ; Andreas Willig |
title_fullStr | Protocols and architectures for wireless sensor networks Holger Karl ; Andreas Willig |
title_full_unstemmed | Protocols and architectures for wireless sensor networks Holger Karl ; Andreas Willig |
title_short | Protocols and architectures for wireless sensor networks |
title_sort | protocols and architectures for wireless sensor networks |
topic | Sensor - Kommunikationsprotokoll - Architektur <Informatik> - Funknetz Sensor networks Wireless LANs Kommunikationsprotokoll (DE-588)4128252-8 gnd Sensor (DE-588)4038824-4 gnd Drahtloses Sensorsystem (DE-588)4789222-5 gnd Drahtloses lokales Netz (DE-588)4633975-9 gnd Funknetz (DE-588)4216130-7 gnd Messwertverarbeitung (DE-588)4038804-9 gnd Architektur Informatik (DE-588)4139374-0 gnd |
topic_facet | Sensor - Kommunikationsprotokoll - Architektur <Informatik> - Funknetz Sensor networks Wireless LANs Kommunikationsprotokoll Sensor Drahtloses Sensorsystem Drahtloses lokales Netz Funknetz Messwertverarbeitung Architektur Informatik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017535104&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT karlholger protocolsandarchitecturesforwirelesssensornetworks AT willigandreas protocolsandarchitecturesforwirelesssensornetworks |