Novel sensors and sensing:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Bristol [u.a.]
Inst. of Physics Publ.
2004
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Schriftenreihe: | Series in sensors
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | IX, 299 S. graph. Darst. |
ISBN: | 075030989X |
Internformat
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264 | 1 | |a Bristol [u.a.] |b Inst. of Physics Publ. |c 2004 | |
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650 | 7 | |a Resonatoren |2 gtt | |
650 | 7 | |a Sensoren |2 gtt | |
650 | 4 | |a Detectors | |
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adam_text | SERIES IN SENSORS NOVEL SENSORS AND SENSING R G JACKSON O : . * IOP
INSTITUTE OF PHYSICS PUBLISHING BRISTOL AND PHILADELPHIA CONTENTS
PREFACE IX 1 THE INSTRUMENTATION SYSTEM 1 1.1 INTRODUCTION 1 1.2 THE
PHILOSOPHY OF MEASUREMENT 3 1.2.1 RANDOM ERRORS 3 1.2.2 SYSTEMATIC
ERRORS 6 1.2.3 ENVIRONMENTAL DISTURBANCES 6 1.2.4 SYSTEM DESIGN AND THE
CONTRIBUTION OF ERRORS 8 1.3 THE GENERAL INSTRUMENTATION SYSTEM 11 1.4
THE OVERALL TRANSFER FUNCTION 12 1.5 DYNAMIC RESPONSE OF THE SENSOR 13
1.6 THE MEASUREMENT SYSTEM AS A SERIES OF NETWORKS 16 BIBLIOGRAPHY 19
REFERENCES 20 EXERCISES 20 2 RESONATOR SENSORS 23 2.1 INTRODUCTION 23
2.2 THE DAMPED HARMONIC OSCILLATOR 24 2.2.1 THE NON-DRIVEN OSCILLATOR 25
2.2.2 THE DRIVEN OSCILLATOR 25 2.2.3 SS FACTOR 28 2.2.4 DRIVING
TECHNIQUES 31 2.3 VIBRATING WIRE SENSORS 33 2.4 TORSIONALLY VIBRATING
ROD 34 2.5 LONGITUDINALLY VIBRATING PLATE 34 2.6 FLEXURAL RESONATORS 35
2.7 VIBRATING CYLINDER 37 2.8 THE TUNING FORK 39 VI CONTENTS 2.9 THE
DOUBLE URNING FORK STRUCTURE 39 2.10 BULK ACOUSTIC WAVE RESONATOR
SENSORS 40 2.11 THICKFILMS 41 REFERENCES 43 EXERCISES 43 3
SEMICONDUCTOR-BASED SENSORS 45 3.1 INTRODUCTION 45 3.2 MECHANICAL
MICROSENSORS 46 3.2.1 USING SILICON TO MEASURE STRAIN 47 3.2.2 PRESSURE
GAUGES 48 3.2.3 ACCELEROMETERS 50 3.2.4 FLOW SENSORS 54 3.2.5 ANGULAR
RATE SENSORS 56 3.3 SURFACE ACOUSTIC WAVE SENSORS (SAWS) 56 3.3.1 MASS
AND GAS/VAPOUR SENSORS 59 3.3.2 TEMPERATURE SENSOR 60 3.3.3 STRAIN
SENSOR 60 3.3.4 MAGNETIC SENSOR 60 3.3.5 CONCLUSION 61 3.4 CHEMICAL
MICROSENSORS 61 3.4.1 IONS IN SOLUTION 62 3.4.2 MEASUREMENT OF PH 63
3.4.3 THE ISFET 64 3.4.4 FET GAS SENSORS 67 3.4.5 BIOSENSORS 68 3.4.6
CONCLUSION 68 3.5 OPTICAL SENSORS 69 3.5.1 THE WAVE-PARTICLE DUALITY 69
3.5.2 DEFINITIONS AND UNITS 69 3.5.3 LIGHT SOURCES 73 3.5.4 SENSOR TYPES
78 3.6 TEMPERATURE SENSORS 92 3.6.1 THERMAL INFRARED RADIATION SENSORS
92 3.6.2 THERMISTORS 93 3.6.3 INTEGRATED CIRCUIT TEMPERATURE SENSORS 95
3.7 DETECTORS OF IONIZING RADIATION 96 3.7.1 RADIOACTIVITY AND
HISTORICAL DEVELOPMENTS 96 3.7.2 COUNTING AND SPECTRA 98 3.7.3
ABSORPTION PROCESSES 98 3.7.4 SOLID-STATE DETECTORS 99 3.8 MAGNETIC
SENSORS 102 3.8.1 HALLEFTECT 102 3.8.2 MAGNETORESISTANCE 104 CONTENTS VN
3.8.3 MAGNETODIODE 105 3.8.4 MAGNETOTRANSISTOR 106 BIBLIOGRAPHY 107
REFERENCES 108 EXERCISES 109 OPTICAL FIBRE SENSORS 112 4.1 INTRODUCTION
112 4.2 THE OPTICAL WAVEGUIDE 113 4.2.1 PRINCIPLES OF PROPAGATION 114
4.2.2 DEGRADATION OF TRANSMISSION IN OPTICAL FIBRES 124 4.2.3
MANUFACTURING TECHNIQUES 127 4.2.4 COMPARISON OF OPTICAL FIBRES WITH
ELECTRICAL LINES 129 4.3 EXTRINSIC OPTICAL FIBRE SENSORS 129 4.3.1
DISPLACEMENT SENSORS 129 4.3.2 POSITIONAL ENCODERS 132 4.3.3 ABSORPTION
SENSORS 134 4.3.4 LUMINESCENCE SENSORS 136 4.3.5 TOTAL INTERNAL
REFLECTION-BASED SENSORS 138 4.3.6 PYROMETERS 141 4.4 INTRINSIC OPTICAL
FIBRE SENSORS 142 4.4.1 PHYSICAL DISTORTION 142 4.4.2 CHANGE IN
OPTICAL-PATH LENGTH 143 4.4.3 ROTATION OF POLARIZATION 148 4.5
DISTRIBUTED SENSING 156 4.5.1 SENSING MECHANISMS 157 4.5.2 MULTIPLEXING
160 4.6 REFERENCING TECHNIQUES 164 REFERENCES 168 EXERCISES 169
INTELLIGENT SENSING 172 5.1 INTRODUCTION 172 5.2 DISCONTINUOUS-TIME
SAMPLING 174 5.3 DISCRETE SAMPLING OF THE MEASURAND 175 5.3.1
DIGITAL-TO-ANALOGUE CONVERSION 176 5.3.2 ANALOGUE-TO-DIGITAL CONVERSION
180 5.4 PC-BASED DATA ACQUISITION BOARDS 188 5.5 SMART SENSORS 191 5.6
ARTIFICIAL INTELLIGENCE IN INSTRUMENTATION 194 5.6.1 RULE-BASED EXPERT
SYSTEMS 194 5.6.2 FUZZY LOGIC 196 5.6.3 ARTIFICIAL NEURAL NETWORKS 205
VIN CONTENTS REFERENCES 215 EXERCISES 216 6 DATA SIGNAL CHARACTERIZATION
AND RECOVERY 219 6.1 INTRODUCTION 219 6.2 CLASSIFICATION OF DATA SIGNALS
220 6.2.1 DETERMINISTIC DATA SIGNALS 220 6.2.2 RANDOM DATA SIGNALS 222
6.3 CHARACTERIZATION OF RANDOM DATA SIGNALS 225 6.3.1 MEAN VALUES AND
VARIANCES 226 6.3.2 PROBABILITY DENSITY FUNCTIONS 226 6.3.3
MULTI-VARIABLE PROBABILITIES, COVARIANCE AND CORRELATION 230 6.3.4 THE
CORRELATION CONCEPT FOR TIME-DEPENDENT SIGNALS 231 6.3.5
AUTO-CORRELATION AND SPECTRAL DENSITY FUNCTIONS 232 6.4 NOISE 236 6.4.1
ORIGINS OF NOISE 236 6.4.2 NOISE REDUCTION TECHNIQUES 238 6.5
INTERFERENCE 248 6.5.1 SOURCES OF INTERFERENCE AND COUPLING MECHANISMS
248 6.5.2 INTERFERENCE REDUCTION TECHNIQUES 251 REFERENCES 257 EXERCISES
257 7 NOVEL DEVELOPMENTS IN FLOW MEASUREMENT SYSTEMS 260 7.1
INTRODUCTION 260 7.2 TYPES OF FLOW FIELD 265 7.2.1 LAMINAR FLOW 265
7.2.2 TURBULENT FLOW 266 7.2.3 NON-STEADY FLOW 267 7.3 THE
CROSS-CORRELATION FLOWMETER 268 7.4 ULTRASOUND 270 7.5 THE DOPPLER
EFFECT 273 7.5.1 THE ECHO SPECTRUM 275 7.5.2 FORWARD AND REVERSE FLOW
277 7.5.3 BLOOD FLOW MEASUREMENT 281 REFERENCES 284 EXERCISES 285
ANSWERS TO EXERCISES 286
|
adam_txt |
SERIES IN SENSORS NOVEL SENSORS AND SENSING R G JACKSON O : . * IOP
INSTITUTE OF PHYSICS PUBLISHING BRISTOL AND PHILADELPHIA CONTENTS
PREFACE IX 1 THE INSTRUMENTATION SYSTEM 1 1.1 INTRODUCTION 1 1.2 THE
PHILOSOPHY OF MEASUREMENT 3 1.2.1 RANDOM ERRORS 3 1.2.2 SYSTEMATIC
ERRORS 6 1.2.3 ENVIRONMENTAL DISTURBANCES 6 1.2.4 SYSTEM DESIGN AND THE
CONTRIBUTION OF ERRORS 8 1.3 THE GENERAL INSTRUMENTATION SYSTEM 11 1.4
THE OVERALL TRANSFER FUNCTION 12 1.5 DYNAMIC RESPONSE OF THE SENSOR 13
1.6 THE MEASUREMENT SYSTEM AS A SERIES OF NETWORKS 16 BIBLIOGRAPHY 19
REFERENCES 20 EXERCISES 20 2 RESONATOR SENSORS 23 2.1 INTRODUCTION 23
2.2 THE DAMPED HARMONIC OSCILLATOR 24 2.2.1 THE NON-DRIVEN OSCILLATOR 25
2.2.2 THE DRIVEN OSCILLATOR 25 2.2.3 SS FACTOR 28 2.2.4 DRIVING
TECHNIQUES 31 2.3 VIBRATING WIRE SENSORS 33 2.4 TORSIONALLY VIBRATING
ROD 34 2.5 LONGITUDINALLY VIBRATING PLATE 34 2.6 FLEXURAL RESONATORS 35
2.7 VIBRATING CYLINDER 37 2.8 THE TUNING FORK 39 VI CONTENTS 2.9 THE
DOUBLE URNING FORK STRUCTURE 39 2.10 BULK ACOUSTIC WAVE RESONATOR
SENSORS 40 2.11 THICKFILMS 41 REFERENCES 43 EXERCISES 43 3
SEMICONDUCTOR-BASED SENSORS 45 3.1 INTRODUCTION 45 3.2 MECHANICAL
MICROSENSORS 46 3.2.1 USING SILICON TO MEASURE STRAIN 47 3.2.2 PRESSURE
GAUGES 48 3.2.3 ACCELEROMETERS 50 3.2.4 FLOW SENSORS 54 3.2.5 ANGULAR
RATE SENSORS 56 3.3 SURFACE ACOUSTIC WAVE SENSORS (SAWS) 56 3.3.1 MASS
AND GAS/VAPOUR SENSORS 59 3.3.2 TEMPERATURE SENSOR 60 3.3.3 STRAIN
SENSOR 60 3.3.4 MAGNETIC SENSOR 60 3.3.5 CONCLUSION 61 3.4 CHEMICAL
MICROSENSORS 61 3.4.1 IONS IN SOLUTION 62 3.4.2 MEASUREMENT OF PH 63
3.4.3 THE ISFET 64 3.4.4 FET GAS SENSORS 67 3.4.5 BIOSENSORS 68 3.4.6
CONCLUSION 68 3.5 OPTICAL SENSORS 69 3.5.1 THE WAVE-PARTICLE DUALITY 69
3.5.2 DEFINITIONS AND UNITS 69 3.5.3 LIGHT SOURCES 73 3.5.4 SENSOR TYPES
78 3.6 TEMPERATURE SENSORS 92 3.6.1 THERMAL INFRARED RADIATION SENSORS
92 3.6.2 THERMISTORS 93 3.6.3 INTEGRATED CIRCUIT TEMPERATURE SENSORS 95
3.7 DETECTORS OF IONIZING RADIATION 96 3.7.1 RADIOACTIVITY AND
HISTORICAL DEVELOPMENTS 96 3.7.2 COUNTING AND SPECTRA 98 3.7.3
ABSORPTION PROCESSES 98 3.7.4 SOLID-STATE DETECTORS 99 3.8 MAGNETIC
SENSORS 102 3.8.1 HALLEFTECT 102 3.8.2 MAGNETORESISTANCE 104 CONTENTS VN
3.8.3 MAGNETODIODE 105 3.8.4 MAGNETOTRANSISTOR 106 BIBLIOGRAPHY 107
REFERENCES 108 EXERCISES 109 OPTICAL FIBRE SENSORS 112 4.1 INTRODUCTION
112 4.2 THE OPTICAL WAVEGUIDE 113 4.2.1 PRINCIPLES OF PROPAGATION 114
4.2.2 DEGRADATION OF TRANSMISSION IN OPTICAL FIBRES 124 4.2.3
MANUFACTURING TECHNIQUES 127 4.2.4 COMPARISON OF OPTICAL FIBRES WITH
ELECTRICAL LINES 129 4.3 EXTRINSIC OPTICAL FIBRE SENSORS 129 4.3.1
DISPLACEMENT SENSORS 129 4.3.2 POSITIONAL ENCODERS 132 4.3.3 ABSORPTION
SENSORS 134 4.3.4 LUMINESCENCE SENSORS 136 4.3.5 TOTAL INTERNAL
REFLECTION-BASED SENSORS 138 4.3.6 PYROMETERS 141 4.4 INTRINSIC OPTICAL
FIBRE SENSORS 142 4.4.1 PHYSICAL DISTORTION 142 4.4.2 CHANGE IN
OPTICAL-PATH LENGTH 143 4.4.3 ROTATION OF POLARIZATION 148 4.5
DISTRIBUTED SENSING 156 4.5.1 SENSING MECHANISMS 157 4.5.2 MULTIPLEXING
160 4.6 REFERENCING TECHNIQUES 164 REFERENCES 168 EXERCISES 169
INTELLIGENT SENSING 172 5.1 INTRODUCTION 172 5.2 DISCONTINUOUS-TIME
SAMPLING 174 5.3 DISCRETE SAMPLING OF THE MEASURAND 175 5.3.1
DIGITAL-TO-ANALOGUE CONVERSION 176 5.3.2 ANALOGUE-TO-DIGITAL CONVERSION
180 5.4 PC-BASED DATA ACQUISITION BOARDS 188 5.5 SMART SENSORS 191 5.6
ARTIFICIAL INTELLIGENCE IN INSTRUMENTATION 194 5.6.1 RULE-BASED EXPERT
SYSTEMS 194 5.6.2 FUZZY LOGIC 196 5.6.3 ARTIFICIAL NEURAL NETWORKS 205
VIN CONTENTS REFERENCES 215 EXERCISES 216 6 DATA SIGNAL CHARACTERIZATION
AND RECOVERY 219 6.1 INTRODUCTION 219 6.2 CLASSIFICATION OF DATA SIGNALS
220 6.2.1 DETERMINISTIC DATA SIGNALS 220 6.2.2 RANDOM DATA SIGNALS 222
6.3 CHARACTERIZATION OF RANDOM DATA SIGNALS 225 6.3.1 MEAN VALUES AND
VARIANCES 226 6.3.2 PROBABILITY DENSITY FUNCTIONS 226 6.3.3
MULTI-VARIABLE PROBABILITIES, COVARIANCE AND CORRELATION 230 6.3.4 THE
CORRELATION CONCEPT FOR TIME-DEPENDENT SIGNALS 231 6.3.5
AUTO-CORRELATION AND SPECTRAL DENSITY FUNCTIONS 232 6.4 NOISE 236 6.4.1
ORIGINS OF NOISE 236 6.4.2 NOISE REDUCTION TECHNIQUES 238 6.5
INTERFERENCE 248 6.5.1 SOURCES OF INTERFERENCE AND COUPLING MECHANISMS
248 6.5.2 INTERFERENCE REDUCTION TECHNIQUES 251 REFERENCES 257 EXERCISES
257 7 NOVEL DEVELOPMENTS IN FLOW MEASUREMENT SYSTEMS 260 7.1
INTRODUCTION 260 7.2 TYPES OF FLOW FIELD 265 7.2.1 LAMINAR FLOW 265
7.2.2 TURBULENT FLOW 266 7.2.3 NON-STEADY FLOW 267 7.3 THE
CROSS-CORRELATION FLOWMETER 268 7.4 ULTRASOUND 270 7.5 THE DOPPLER
EFFECT 273 7.5.1 THE ECHO SPECTRUM 275 7.5.2 FORWARD AND REVERSE FLOW
277 7.5.3 BLOOD FLOW MEASUREMENT 281 REFERENCES 284 EXERCISES 285
ANSWERS TO EXERCISES 286 |
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discipline | Handwerk und Gewerbe / Verschiedene Technologien Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
discipline_str_mv | Handwerk und Gewerbe / Verschiedene Technologien Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
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id | DE-604.BV021524268 |
illustrated | Illustrated |
index_date | 2024-07-02T14:23:25Z |
indexdate | 2024-07-09T20:37:47Z |
institution | BVB |
isbn | 075030989X |
language | English |
lccn | 2005275405 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014740717 |
oclc_num | 56652674 |
open_access_boolean | |
owner | DE-703 |
owner_facet | DE-703 |
physical | IX, 299 S. graph. Darst. |
publishDate | 2004 |
publishDateSearch | 2004 |
publishDateSort | 2004 |
publisher | Inst. of Physics Publ. |
record_format | marc |
series2 | Series in sensors |
spelling | Jackson, R. G. Verfasser aut Novel sensors and sensing R. G. Jackson Bristol [u.a.] Inst. of Physics Publ. 2004 IX, 299 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Series in sensors Detectoren gtt Halfgeleiders gtt Intelligentie gtt Optische golfgeleiders gtt Resonatoren gtt Sensoren gtt Detectors Sensor (DE-588)4038824-4 gnd rswk-swf Sensor (DE-588)4038824-4 s DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014740717&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Jackson, R. G. Novel sensors and sensing Detectoren gtt Halfgeleiders gtt Intelligentie gtt Optische golfgeleiders gtt Resonatoren gtt Sensoren gtt Detectors Sensor (DE-588)4038824-4 gnd |
subject_GND | (DE-588)4038824-4 |
title | Novel sensors and sensing |
title_auth | Novel sensors and sensing |
title_exact_search | Novel sensors and sensing |
title_exact_search_txtP | Novel sensors and sensing |
title_full | Novel sensors and sensing R. G. Jackson |
title_fullStr | Novel sensors and sensing R. G. Jackson |
title_full_unstemmed | Novel sensors and sensing R. G. Jackson |
title_short | Novel sensors and sensing |
title_sort | novel sensors and sensing |
topic | Detectoren gtt Halfgeleiders gtt Intelligentie gtt Optische golfgeleiders gtt Resonatoren gtt Sensoren gtt Detectors Sensor (DE-588)4038824-4 gnd |
topic_facet | Detectoren Halfgeleiders Intelligentie Optische golfgeleiders Resonatoren Sensoren Detectors Sensor |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014740717&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT jacksonrg novelsensorsandsensing |