Protection of electricity distribution networks:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London
Inst. of Electrical Engineers
2004
|
Ausgabe: | 2. ed. |
Schriftenreihe: | IEE power and energy series
47 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | X, 342 S. graph. Darst. |
ISBN: | 0863413579 |
Internformat
MARC
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250 | |a 2. ed. | ||
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Datensatz im Suchindex
_version_ | 1804140308639776768 |
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adam_text | PROTECTION OF ELECTRICITY DISTRIBUTION NETWORKS - 2ND EDITION JUAN M.
GERS AND EDWARD J. HOLMES THE INSTITUTION OF ELECTRICA! ENGINEERS
CONTENTS 1 INTRODUCTION 1.1 1.2 1.3 1.4 1.5 1.6 1.7 GENERAL BASIC
PRINCIPLES OF ELECTRICAL SYSTEMS PROTECTION REQUIREMENTS PROTECTION
ZONES PRIMARY AND BACK-UP PROTECTION 1.5.1 PRIMARY PROTECTION 1.5.2
BACK-UP PROTECTION DIRECTIONAL PROTECTION EXERCISE 1.1 PREFACE AND
ACKNOWLEDGEMENTS XI PREFACE TO 2ND EDITION XIII 1 1 3 3 5 5 5 5 7 9
CALCULATION OF SHORT-CIRCUIT CURRENTS 11 2.1 MODELLING FOR SHORT-CIRCUIT
CURRENT CALCULATIONS 11 2.1.1 EFFECT OF THE SYSTEM IMPEDANCE 11 2.1.2
EFFECT OF ROTATING MACHINERY 13 2.1.3 TYPES OF FAULT DUTY 14 2.1.4
CALCULATION OF FAULT DUTY VALUES 16 2.2 METHODS FOR CALCULATING
SHORT-CIRCUIT CURRENTS 19 2.2.1 IMPORTANCE AND CONSTRUCTION OF SEQUENCE
NETWORKS 22 2.2.2 CALCULATION OF ASYMMETRICAL FAULTS USING SYMMETRICAL
COMPONENTS 23 2.2.3 EQUIVALENT IMPEDANCES FOR A POWER SYSTEM 26 2.3
SUPPLYING THE CURRENT AND VOLTAGE SIGNALS TO PROTECTION SYSTEMS 26 2.4
CALCULATION OF FAULTS BY COMPUTER 28 CLASSIFICATION AND FUNCTION OF
RELAYS 31 3.1 CLASSIFICATION 31 3.1.1 CONSTRUCTION 31 VI CONTENTS 3.1.2
INCOMING SIGNAL 3.1.3 FUNCTION 3.1.4 INTERNATIONAL IDENTIFICATION OF
ELECTRICAL DEVICES 3.2 ELECTROMECHANICAL RELAYS 3.2.1 ATTRACTION RELAYS
3.2.2 RELAYS WITH MOVEABLE COILS 3.2.3 INDUCTION RELAYS 3.3 EVOLUTION OF
PROTECTION RELAYS 3.4 NUMERICAL PROTECTION 3.4.1 GENERAL 3.4.2
CHARACTERISTICS OF NUMERICAL RELAYS 3.4.3 TYPICAL ARCHITECTURES OF
NUMERICAL RELAYS 3.4.4 STANDARD FUNCTIONS OF NUMERICAL RELAYS 3.5
SUPPLIES TO THE RELAY CIRCUITS 4 CURRENT AND VOLTAGE TRANSFORMERS 4.1
VOLTAGE TRANSFORMERS 4.1.1 EQUIVALENT CIRCUIT 4.1.2 ERRORS 4.1.3 BUERDEN
4.1.4 SELECTIONOFVTS 4.1.5 CAPACITOR VOLTAGE TRANSFORMERS 4.2 CURRENT
TRANSFORMERS 4.2.1 EQUIVALENT CIRCUIT 4.2.2 ERRORS 4.2.3 AC SATURATION
4.2.4 BUERDEN 4.2.5 SELECTIONOFCTS 4.2.6 DC SATURATION 4.2.7 PRECAUTIONS
WHEN WORKING WITH CTS 5 OVERCURRENT PROTECTION 5.1 GENERAL 5.2 TYPES OF
OVERCURRENT RELAY 5.2.1 DEFINITE-CURRENT RELAYS 5.2.2
DEFINITE-TIME/CURRENT OR DEFMITE-TIME RELAYS 5.2.3 INVERSE-TIME RELAYS
5.3 SETTING OVERCURRENT RELAYS 5.3.1 SETTING INSTANTANEOUS UNITS 5.3.2
COVERAGE OF INSTANTANEOUS UNITS PROTECTING LINES BETWEEN SUBSTATIONS
5.3.3 SETTING THE PARAMETERS OF TIME DELAY OVERCURRENT RELAYS CONTENTS
VII 5.4 CONSTRAINTS OF RELAY CO-ORDINATION 73 5.4.1 MINIMUM
SHORT-CIRCUIT LEVELS 73 5.4.2 THERMAL LIMITS 73 5.4.3 PICK-UP VALUES 75
5.5 CO-ORDINATION ACROSS DY TRANSFORMERS 86 5.6 CO-ORDINATION WITH FUSES
96 5.7 CO-ORDINATION OF NEGATIVE-SEQUENCE UNITS 96 5.8 OVERCURRENT
RELAYS WITH VOLTAGE CONTROL 97 5.9 SETTING OVERCURRENT RELAYS USING
SOFTWARE TECHNIQUES 98 5.10 USE OF DIGITAL LOGIC IN NUMERICAL RELAYING
99 5.10.1 GENERAL 99 5.10.2 PRINCIPLES OF DIGITAL LOGIC 99 5.10.3 LOGIC
SCHEMES 100 5.11 ADAPTIVE PROTECTION WITH GROUP SETTINGS CHANGE 102 5.12
EXERCISES 104 FUSES, RECLOSERS AND SECTIONALISERS 109 6.1 EQUIPMENT 109
6.1.1 RECLOSERS 109 6.1.2 SECTIONALISERS 113 6.1.3 FUSES 114 6.2
CRITERIA FOR CO-ORDINATION OF TIME/CURRENT DEVICES IN DISTRIBUTION
SYSTEMS 117 6.2.1 FUSE-FUSE CO-ORDINATION 117 6.2.2 RECLOSER-FUSE
CO-ORDINATION 117 6.2.3 RECLOSER-RECLOSER CO-ORDINATION 120 6.2.4
RECLOSER-RELAY CO-ORDINATION 122 6.2.5 RECLOSER-SECTIONALISER
CO-ORDINATION 123 6.2.6 RECLOSER-SECTIONALISER-FUSE CO-ORDINATION 123
DIRECTIONAL OVERCURRENT RELAYS 127 7.1 CONSTRUCTION 127 7.2 PRINCIPLE OF
OPERATION 128 7.3 RELAY CONNECTIONS 128 7.3.1 30 CONNECTION (0 AMT)
129 7.3.2 60 CONNECTION (0 AMT) 129 7.3.3 90 CONNECTION (30 AMT) 130
7.3.4 90 CONNECTION (45 AMT) 131 7.4 DIRECTIONAL EARTH-FAULT RELAYS
131 7.5 CO-ORDINATION OF INSTANTANEOUS UNITS 137 7.6 SETTING OF
TIME-DELAY DIRECTIONAL OVERCURRENT UNITS 141 7.6.1 PICK-UP SETTING 141
7.6.2 TIME DIAL SETTING 142 7.7 EXERCISES 146 CONTENTS DIFFERENTIAL
PROTECTION 149 8.1 GENERAL 149 8.2 CLASSIFICATION OF DIFFERENTIAL
PROTECTION 152 8.3 TRANSFORMER DIFFERENTIAL PROTECTION 152 8.3.1 BASIC
CONSIDERATIONS 153 8.3.2 SELECTION AND CONNECTION OF CTS 154 8.3.3
PERCENTAGE OF WINDING PROTECTED BY THE DIFFERENTIAL RELAY DURING AN
EARTH FAULT 159 8.3.4 DETERMINATION OF THE SLOPE 161 8.3.5 DISTRIBUTION
OF FAULT CURRENT IN POWER TRANSFORMERS 162 8.4 DIFFERENTIAL PROTECTION
FOR GENERATORS AND ROTATING MACHINES 164 8.5 LINE DIFFERENTIAL
PROTECTION 164 8.6 BUSBAR DIFFERENTIAL PROTECTION 168 8.6.1 DIFFERENTIAL
SYSTEM WITH MULTIPLE RESTRAINT 168 8.6.2 HIGH IMPEDANCE DIFFERENTIAL
SYSTEM 169 8.7 EXERCISES 170 DISTANCE PROTECTION 173 9.1 GENERAL 173 9.2
TYPES OF DISTANCE RELAYS 174 9.2.1 IMPEDANCE RELAY 176 9.2.2 DIRECTIONAL
RELAY 179 9.2.3 REACTANCE RELAY 180 9.2.4 MHO RELAY 181 9.2.5 COMPLETELY
POLARISED MHO RELAY 182 9.2.6 RELAYS WITH LENS CHARACTERISTICS 183 9.2.7
RELAYS WITH POLYGONAL CHARACTERISTICS 183 9.2.8 RELAYS WITH COMBINED
CHARACTERISTICS 185 9.3 SETTING THE REACH AND OPERATING TIME OF DISTANCE
RELAYS 185 9.4 THE EFFECT OFINFEEDS ON DISTANCE RELAYS 188 9.5 THE
EFFECT OF ARC RESISTANCE ON DISTANCE PROTECTION 193 9.6 RESIDUAL
COMPENSATION 194 9.7 IMPEDANCES SEEN BY DISTANCE RELAYS 195 9.7.1 PHASE
UNITS 195 9.7.2 EARTH-FAULT UNITS 196 9.8 POWER SYSTEM OSCILLATIONS 196
9.9 THE EFFECTIVE COVER OF DISTANCE RELAYS 199 9.10 MAXIMUM LOAD CHECK
200 9.11 DRAWING RELAY SETTINGS 203 9.12 INTERTRIPPING SCHEMES 212
9.12.1 UNDER REACH WITH DIRECT TRIPPING 213 9.12.2 PERMISSIVE UNDER
REACH INTERTRIPPING 213 9.12.3 PERMISSIVE OVER REACH INTERTRIPPING 214
9.13 DISTANCE RELAYS ON SERIES-COMPENSATED LINES 214 CONTENTS IX 9.14
TECHNICAL CONSIDERATIONS OF DISTANCE PROTECTION IN TEE CIRCUITS 215
9.14.1 TEE CONNECTION WITH INFEEDS AT TWO TERMINALS 215 9.14.2 TEE
CONNECTION WITH INFEEDS AT ALL THREE TERMINALS 218 9.15 USE OF DISTANCE
RELAYS FOR THE DETECTION OF THE LOSS OF EXCITATION IN GENERATORS 219
9.16 EXERCISES 222 PROTECTION OF INDUSTRIAL SYSTEMS 225 10.1 PROTECTION
DEVICES 225 10.1.1 OVERCURRENT RELAYS 225 10.1.2 DIRECT ACTING DEVICES
IN POWER AND MOULDED-CASE CIRCUIT BREAKERS 225 10.1.3 COMBINED THERMAL
RELAY CONTACTOR AND FUSE 226 10.2 CRITERIA FOR SETTING OVERCURRENT
PROTECTION DEVICES ASSOCIATED WITH MOTORS 226 10.2.1 THERMAL RELAYS 226
10.2.2 LOW VOLTAGE BREAKERS 227 INDUSTRIAL PLANT LOAD SHEDDING 239 11.1
POWER SYSTEM OPERATION AFTER LOSS OF GENERATION 239 11.2 DESIGN OF AN
AUTOMATIC LOAD SHEDDING SYSTEM 240 11.2.1 SIMPLE MACHINE MODEL 240
11.2.2 PARAMETERS FOR IMPLEMENTING A LOAD SHEDDING SYSTEM 241 11.3
CRITERIA FOR SETTING FREQUENCY RELAYS 242 11.3.1 OPERATING TIMES 242
11.3.2 DETERMINATION OF THE FREQUENCY VARIATION 243 11.4 EXAMPLE OF
CALCULATING AND SETTING FREQUENCY RELAYS IN AN INDUSTRIAL PLANT 243
11.4.1 CALCULATION OF OVERLOAD 243 11.4.2 LOADTOBESHED 243 11.4.3
FREQUENCY LEVELS 243 11.4.4 LOAD SHEDDING STAGES 243 11.4.5
DETERMINATION OF THE FREQUENCY RELAY SETTINGS 244 11.4.6 VERIFICATION OF
OPERATION 247 PROTECTION SCHEMES AND SUBSTATION DESIGN DIAGRAMS 251 12.1
PROTECTION SCHEMES 251 12.1.1 GENERATOR PROTECTION 251 12.1.2 MOTOR
PROTECTION 252 12.1.3 TRANSFORMER PROTECTION 258 12.1.4 LINE PROTECTION
261 12.2 SUBSTATION DESIGN DIAGRAMS 261 12.2.1 SINGLE-LINE DIAGRAMS 262
12.2.2 SUBSTATION LAYOUT DIAGRAMS 263 X CONTENTS 12.2.3 DIAGRAMS OF AC
CONNECTIONS 264 12.2.4 DIAGRAMS OFDC CONNECTIONS 265 12.2.5 WIRING
DIAGRAMS 266 12.2.6 LOGIC DIAGRAMS 268 12.2.7 CABLINGLISTS 268 13
PROCESSING ALARMS 13.1 GENERAL 13.2 ALARM PROCESSING METHODS 13.3 EXPERT
SYSTEMS 13.4 EQUIVALENT ALARMS 13.5 RULES 13.6 FINGER PRINTING APPROACH
13.7 HYPOTHESIS APPROACH 14 INSTALLATION, TESTING AND MAINTENANCE OF
PROTECTION SYSTEMS 14.1 INSTALLATION OF PROTECTION EQUIPMENT 14.2
TESTING PROTECTION SCHEMES 14.2.1 FACTORYTESTS 14.2.2 PRECOMMISSIONING
TESTS 14.2.3 PERIODIC MAINTENANCE 14.3 COMMISSIONING NUMERICAL
PROTECTION 14.3.1 SETTING THE PARAMETERS 14.3.2 PERFORMANCE TESTS
BIBLIOGRAPHY 297 APPENDIX: SOLUTIONS TO EXERCISES 301 269 269 270 271
272 273 273 275 283 283 285 285 285 290 292 292 293 INDEX 339
|
any_adam_object | 1 |
author | Gers, Juan M. Holmes, Edward J. |
author_facet | Gers, Juan M. Holmes, Edward J. |
author_role | aut aut |
author_sort | Gers, Juan M. |
author_variant | j m g jm jmg e j h ej ejh |
building | Verbundindex |
bvnumber | BV024121349 |
classification_rvk | ZN 8580 |
ctrlnum | (OCoLC)249701034 (DE-599)BVBBV024121349 |
dewey-full | 621.319 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.319 |
dewey-search | 621.319 |
dewey-sort | 3621.319 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 2. ed. |
format | Book |
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indexdate | 2024-07-09T21:57:55Z |
institution | BVB |
isbn | 0863413579 |
language | English |
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physical | X, 342 S. graph. Darst. |
publishDate | 2004 |
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publisher | Inst. of Electrical Engineers |
record_format | marc |
series | IEE power and energy series |
series2 | IEE power and energy series |
spelling | Gers, Juan M. Verfasser aut Protection of electricity distribution networks Juan M. Gers and Edward J. Holmes 2. ed. London Inst. of Electrical Engineers 2004 X, 342 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier IEE power and energy series 47 Netzschutz (DE-588)4139359-4 gnd rswk-swf Schutz Elektrotechnik (DE-588)4128586-4 gnd rswk-swf Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd rswk-swf Elektrizitätsversorgungsnetz (DE-588)4121178-9 s Schutz Elektrotechnik (DE-588)4128586-4 s 1\p DE-604 Netzschutz (DE-588)4139359-4 s 2\p DE-604 Holmes, Edward J. Verfasser aut IEE power and energy series 47 (DE-604)BV035421413 47 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018338071&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Gers, Juan M. Holmes, Edward J. Protection of electricity distribution networks IEE power and energy series Netzschutz (DE-588)4139359-4 gnd Schutz Elektrotechnik (DE-588)4128586-4 gnd Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd |
subject_GND | (DE-588)4139359-4 (DE-588)4128586-4 (DE-588)4121178-9 |
title | Protection of electricity distribution networks |
title_auth | Protection of electricity distribution networks |
title_exact_search | Protection of electricity distribution networks |
title_full | Protection of electricity distribution networks Juan M. Gers and Edward J. Holmes |
title_fullStr | Protection of electricity distribution networks Juan M. Gers and Edward J. Holmes |
title_full_unstemmed | Protection of electricity distribution networks Juan M. Gers and Edward J. Holmes |
title_short | Protection of electricity distribution networks |
title_sort | protection of electricity distribution networks |
topic | Netzschutz (DE-588)4139359-4 gnd Schutz Elektrotechnik (DE-588)4128586-4 gnd Elektrizitätsversorgungsnetz (DE-588)4121178-9 gnd |
topic_facet | Netzschutz Schutz Elektrotechnik Elektrizitätsversorgungsnetz |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018338071&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV035421413 |
work_keys_str_mv | AT gersjuanm protectionofelectricitydistributionnetworks AT holmesedwardj protectionofelectricitydistributionnetworks |