Numerical distance protection: principles and applications
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Erlangen
Publicis Corporate Publ.
2008
|
Ausgabe: | 3. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 406 S. Ill., graph. Darst. |
ISBN: | 9783895783180 |
Internformat
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264 | 1 | |a Erlangen |b Publicis Corporate Publ. |c 2008 | |
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Datensatz im Suchindex
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adam_text | NUMERICAL DISTANCE PROTECTION PRINCIPLES AND APPLICATIONS PUBLICIS
CORPORATE PUBLISHING CONTENTS 1 INTRODUCTION 11 2 DEFINITIONS 13 3 MODE
OF OPERATION 21 3.1 FUNDAMENTALS OF DISTANCE PROTECTION 21 3.1.1 CONCEPT
21 3.1.2 RELAY IMPEDANCE (SECONDARY IMPEDANCE) 22 3.1.3 IMPEDANCE
DIAGRAM 23 3.1.4 DISTANCE MEASUREMENT 24 3.1.5 DIRECTIONAL FAULT
DISCRIMINATION 28 3.1.6 STARTING (FAULT DETECTION) 31 3.1.7 DISTANCE
ZONES (STEPS) . 42 3.1.8 ZONE- AND TIMER-CONTROL 46 3.1.9 SWITCHED AND
NON-SWITCHED DISTANCE PROTECTION 48 3.1.10 DISTANCE PROTECTION WITH
SIGNALLING CHANNELS 51 3.1.11 POWER SWING BLOCKING, POWER SWING TRIPPING
(OUT OF STEP PROTECTION) .... 63 3.1.12 DISTANCE PROTECTION WITH
AUTOMATIC RECLOSURE 68 3.1.13 DISTANCE TO FAULT LOCATOR 75 3.1.14
GRADING CHART 80 3.2 NUMERICAL DISTANCE MEASUREMENT 90 3.2.1 DEFINITION
OF THE FAULT LOOP 90 3.2.2 DETERMINATION OF THE LOOP IMPEDANCE 95 3.2.3
NUMERICAL IMPEDANCE COMPUTATION 99 3.3 NUMERICAL DIRECTION DETERMINATION
(POLARISATION) 109 3.3.1 DIRECTION DETERMINATION WITH FAULT LOOP VOLTAGE
(SELF POLARISATION) 109 3.3.2 DIRECTION DETERMINATION WITH HEALTHY PHASE
VOLTAGES (CROSS-POLARISATION) .111 3.3.3 DIRECTIONAL CHARACTERISTIC IN
THE IMPEDANCE PLFNE 113 3.3.4 SELECTION OF THE CROSS POLARISATION
VOLTAGE 115 3.3.5 INFLUENCE OF LOAD TRANSFER 116 3.3.6 IMPLEMENTATION OF
VOLTAGE-MEMORY(-IES) 119 3.3.7 ADAPTIVE DIRECTIONAL DETERMINATION 120
3.4 CIRCULAR CHARACTERISTICS WITH NUMERICAL TECHNOLOGY 121 3.4.1
MHO-CIRDE . Y 121 3.4.2 POLARISED JVIHO-CHARACTERISTIC 123 3.4.3 LOAD
INFLUENCE ON POLARISED MHO-CIRCLES 127 3.4.4 MHO-CIRCLE WITH VOLTAGE
MEMORY 130 CONTENTS 3.5 DISTANCE MEASUREMENT, INFLUENCING QUANTITIES 130
3.5.1 FAULT RESISTANCE 130 3.5.2 INTERMEDIATE INFEEDS 151 3.5.3 PARALLEL
LINES 155 3.5.4 DISTANCE PROTECTION FOR TRANSFORMERS 168 3.5.5
NON-SYMMETRY OF THE LINE _ 178 3.5.6 SERIES-COMPENSATION 191 4 DEVICE
DESIGN 200 4.1 INTELLIGENT ELECTRONIC DEVICES (IEDS) 200 4.2 MECHANICAL
DESIGN 202 4.3 RELAY COMMUNICATIONS 203 4.4 INTEGRATED FUNCTIONS 205 4.5
RELAY TERMINAL CONNECTIONS 211 4.6 RELAY OPERATION 214 5 APPLICATION 216
5.1 GENERAL ASPECTS 216 5.1.1 APPLICATION CRITERIA 216 5.1.2 SHORTEST
LINE LENGTH 217 5.1.3 TRIPPING TIME 218 5.1.4 TELEPROTECTION, CHOICE OF
TECHNIQUE 221 5.1.5 INSTRUMENT TRANSFORMER REQUIREMENTS 223 5.2 DISTANCE
PROTECTION IN THE DISTRIBUTION SYSTEM 253 5.2.1 GENERAL 253 5.2.2
DISTANCE PROTECTION IN ISOLATED OR COMPENSATED SYSTEMS 261 5.2.3
DISTANCE PROTECTION IN DISTRIBUTION NETWORKS WITH LOW IMPEDANCE
STAR-POINT EARTHING 268 5.2.4 DISTANCE PROTECTION IN INDUSTRIAL NETWORKS
271 5.3 DISTANCE PROTECTION IN TRANSMISSION NETWORKS 273 5.3.1 GENERALS
ASPECTS 273 5.3.2 PROTECTION CONCEPTS 278 5.3.2.1 HIGH-VOLTAGE OVERHEAD
LINES 278 5.3.2.2 EHV-LINE 280 5.3.2.3 1 1/2 CIRCUIT-BREAKER SUBSTATIONS
* 283 5.3.2.4 RING BUSBAR 284 5.3.2.5 DOUBLE CIRCUIT LINE 284 5.3.2.6
THREE-TERMINAL LINE 285 5.3.2.7 SERIES-COMPENSATED LINES 287 6
PROTECTION SETTINGS 290 6.1 GENERAL ASPECTS 291 6.2 FAULT DETECTION (3RD
ZONE) 291 6.2.1 FAULT DETECTION METHODS AND SETTING PHILOSOHIES 292
6.2.2 SECURITY OF THE FAULT DETECTION 293 6.2.3 RELAY (LINE) LOADABILITY
294 CONTENTS 6.2.4 PHASE-SELECTIVITY 295 6.2.5 SETTING OF THE U-I-J
FAULT DETECTION 297 6.2.6 SETTING OF THE IMPEDANCE FAULT DETECTION 298
6.3 SETTING OF THE DISTANCE ZONES 304 6.3.1 REACH (X-SETTING) AND
GRADING TIME 304 6.3.2 ARC COMPENSATION (R-SETTING) 307 6.3.3 SPECIFICS
FOR THE ZONE SETTINGS IN CABLE NETWORKS 311 6.3.4 ADJUSTING THE ZONE
REACH IN CASE OF LARGE R/X-SETTING 314 6.3.5 GRADING OF DISTANCE ZONES
WITH DIFFERENT CHARACTERISTICS 315 6.3.6 SETTING OF THE POWER SWING
BLOCKING 317 7 CALCULATION EXAMPLES 322 7.1 DOUBLE CIRCUIT LINES IN
EARTHED SYSTEMS 322 7.2 THREE TERMINAL LINE (TEED FEEDERS) 335 8
COMMISSIONING 344 8.1 TESTING OF THE PROTECTION SYSTEM 344 8.2 TEST WITH
LOAD 346 9 MAINTENANCE 349 9.1 SELF MONITORING 349 9.2 MAINTENANCE
STRATEGY . 350 10 BIBLIOGRAPHY 352 10.1 TECHNICAL PAPERS 352 10.2 BOOKS
359 11 APPENDIX 361 A.I DISTANCE MEASUREMENT ALGORITHMS 361 A.I .1
PRINCIPLE 361 A.I .2 FOURIER ANALYSIS BASED TECHNIQUE 362 A.I .3
TRANSIENT BEHAVIOUR 367 A.I .4 PRACTICAL APPLICATION 368 A.I .5
LITERATURE 369 A.2 CALCULATION WITH PHASORS AND COMPLEX QUANTITIES 370
A.2.1 DEFINITIONS * 370 A.2.2 CALCULATION WITH PHASORS AND COMPLEX
QUANTITIES 371 A.3 FUNDAMENTALS OF SYMMETRICAL COMPONENT ANALYSIS 374
A.3.1 CALCULATION PROCEDURE 374 A.3.2 TYPICAL SYSTEM COMPONENT DATA 379
A.3.3 EQUIVALENT CIRCUITS AND FORMULAS FOR NETWORK REDUCTION 380 A.4
IMPEDANCES OF.OVERHEAD LINES AND CABLES 383 A.4.1 SINGLE LINE
(TRANSPOSED) 383 A.4.2 DOUBLE CIRCUIT LINE (TRANSPOSED) 384 A.4.3 BUNDLE
CONDUCTOR 385 A.4.4 CABLE IMPEDANCES 385 CONTENTS A.5 REACH OF BACK-UP
ZONES ON PARALLEL LINES 387 A.5.1 PHASE-TO-PHASE FAULTS 387 A.5.2
PHASE-TO-EARTH FAULTS 389 A.6 TILTING OF THE QUADRILATERAL TOP LINE TO
AVOID OVERREACH 398 INDEX 403
|
adam_txt |
NUMERICAL DISTANCE PROTECTION PRINCIPLES AND APPLICATIONS PUBLICIS
CORPORATE PUBLISHING CONTENTS 1 INTRODUCTION 11 2 DEFINITIONS 13 3 MODE
OF OPERATION 21 3.1 FUNDAMENTALS OF DISTANCE PROTECTION 21 3.1.1 CONCEPT
21 3.1.2 RELAY IMPEDANCE (SECONDARY IMPEDANCE) 22 3.1.3 IMPEDANCE
DIAGRAM 23 3.1.4 DISTANCE MEASUREMENT 24 3.1.5 DIRECTIONAL FAULT
DISCRIMINATION 28 3.1.6 STARTING (FAULT DETECTION) 31 3.1.7 DISTANCE
ZONES (STEPS) . 42 3.1.8 ZONE- AND TIMER-CONTROL 46 3.1.9 SWITCHED AND
NON-SWITCHED DISTANCE PROTECTION 48 3.1.10 DISTANCE PROTECTION WITH
SIGNALLING CHANNELS 51 3.1.11 POWER SWING BLOCKING, POWER SWING TRIPPING
(OUT OF STEP PROTECTION) . 63 3.1.12 DISTANCE PROTECTION WITH
AUTOMATIC RECLOSURE 68 3.1.13 DISTANCE TO FAULT LOCATOR 75 3.1.14
GRADING CHART 80 3.2 NUMERICAL DISTANCE MEASUREMENT 90 3.2.1 DEFINITION
OF THE FAULT LOOP 90 3.2.2 DETERMINATION OF THE LOOP IMPEDANCE 95 3.2.3
NUMERICAL IMPEDANCE COMPUTATION 99 3.3 NUMERICAL DIRECTION DETERMINATION
(POLARISATION) 109 3.3.1 DIRECTION DETERMINATION WITH FAULT LOOP VOLTAGE
(SELF POLARISATION) 109 3.3.2 DIRECTION DETERMINATION WITH HEALTHY PHASE
VOLTAGES (CROSS-POLARISATION) .111 3.3.3 DIRECTIONAL CHARACTERISTIC IN
THE IMPEDANCE PLFNE 113 3.3.4 SELECTION OF THE CROSS POLARISATION
VOLTAGE 115 3.3.5 INFLUENCE OF LOAD TRANSFER 116 3.3.6 IMPLEMENTATION OF
VOLTAGE-MEMORY(-IES) 119 3.3.7 ADAPTIVE DIRECTIONAL DETERMINATION 120
3.4 CIRCULAR CHARACTERISTICS WITH NUMERICAL TECHNOLOGY 121 3.4.1
MHO-CIRDE . Y 121 3.4.2 POLARISED JVIHO-CHARACTERISTIC \ 123 3.4.3 LOAD
INFLUENCE ON POLARISED MHO-CIRCLES 127 3.4.4 MHO-CIRCLE WITH VOLTAGE
MEMORY 130 CONTENTS 3.5 DISTANCE MEASUREMENT, INFLUENCING QUANTITIES 130
3.5.1 FAULT RESISTANCE 130 3.5.2 INTERMEDIATE INFEEDS 151 3.5.3 PARALLEL
LINES 155 3.5.4 DISTANCE PROTECTION FOR TRANSFORMERS 168 3.5.5
NON-SYMMETRY OF THE LINE _ 178 3.5.6 SERIES-COMPENSATION 191 4 DEVICE
DESIGN 200 4.1 INTELLIGENT ELECTRONIC DEVICES (IEDS) 200 4.2 MECHANICAL
DESIGN 202 4.3 RELAY COMMUNICATIONS 203 4.4 INTEGRATED FUNCTIONS 205 4.5
RELAY TERMINAL CONNECTIONS 211 4.6 RELAY OPERATION 214 5 APPLICATION 216
5.1 GENERAL ASPECTS 216 5.1.1 APPLICATION CRITERIA 216 5.1.2 SHORTEST
LINE LENGTH 217 5.1.3 TRIPPING TIME 218 5.1.4 TELEPROTECTION, CHOICE OF
TECHNIQUE 221 5.1.5 INSTRUMENT TRANSFORMER REQUIREMENTS 223 5.2 DISTANCE
PROTECTION IN THE DISTRIBUTION SYSTEM 253 5.2.1 GENERAL 253 5.2.2
DISTANCE PROTECTION IN ISOLATED OR COMPENSATED SYSTEMS 261 5.2.3
DISTANCE PROTECTION IN DISTRIBUTION NETWORKS WITH LOW IMPEDANCE
STAR-POINT EARTHING 268 5.2.4 DISTANCE PROTECTION IN INDUSTRIAL NETWORKS
271 5.3 DISTANCE PROTECTION IN TRANSMISSION NETWORKS 273 5.3.1 GENERALS
ASPECTS 273 5.3.2 PROTECTION CONCEPTS 278 5.3.2.1 HIGH-VOLTAGE OVERHEAD
LINES 278 5.3.2.2 EHV-LINE 280 5.3.2.3 1 1/2 CIRCUIT-BREAKER SUBSTATIONS
* 283 5.3.2.4 RING BUSBAR 284 5.3.2.5 DOUBLE CIRCUIT LINE 284 5.3.2.6
THREE-TERMINAL LINE 285 5.3.2.7 SERIES-COMPENSATED LINES 287 6
PROTECTION SETTINGS 290 6.1 GENERAL ASPECTS 291 6.2 FAULT DETECTION (3RD
ZONE) 291 6.2.1 FAULT DETECTION METHODS AND SETTING PHILOSOHIES 292
6.2.2 SECURITY OF THE FAULT DETECTION 293 6.2.3 RELAY (LINE) LOADABILITY
294 CONTENTS 6.2.4 PHASE-SELECTIVITY 295 6.2.5 SETTING OF THE U-I-J
FAULT DETECTION 297 6.2.6 SETTING OF THE IMPEDANCE FAULT DETECTION 298
6.3 SETTING OF THE DISTANCE ZONES 304 6.3.1 REACH (X-SETTING) AND
GRADING TIME 304 6.3.2 ARC COMPENSATION (R-SETTING) 307 6.3.3 SPECIFICS
FOR THE ZONE SETTINGS IN CABLE NETWORKS 311 6.3.4 ADJUSTING THE ZONE
REACH IN CASE OF LARGE R/X-SETTING 314 6.3.5 GRADING OF DISTANCE ZONES
WITH DIFFERENT CHARACTERISTICS 315 6.3.6 SETTING OF THE POWER SWING
BLOCKING 317 7 CALCULATION EXAMPLES 322 7.1 DOUBLE CIRCUIT LINES IN
EARTHED SYSTEMS 322 7.2 THREE TERMINAL LINE (TEED FEEDERS) 335 8
COMMISSIONING 344 8.1 TESTING OF THE PROTECTION SYSTEM 344 8.2 TEST WITH
LOAD 346 9 MAINTENANCE 349 9.1 SELF MONITORING 349 9.2 MAINTENANCE
STRATEGY .' 350 10 BIBLIOGRAPHY 352 10.1 TECHNICAL PAPERS 352 10.2 BOOKS
359 11 APPENDIX 361 A.I DISTANCE MEASUREMENT ALGORITHMS 361 A.I .1
PRINCIPLE 361 A.I .2 FOURIER ANALYSIS BASED TECHNIQUE 362 A.I .3
TRANSIENT BEHAVIOUR 367 A.I .4 PRACTICAL APPLICATION 368 A.I .5
LITERATURE 369 A.2 CALCULATION WITH PHASORS AND COMPLEX QUANTITIES 370
A.2.1 DEFINITIONS * 370 A.2.2 CALCULATION WITH PHASORS AND COMPLEX
QUANTITIES 371 A.3 FUNDAMENTALS OF SYMMETRICAL COMPONENT ANALYSIS 374
A.3.1 CALCULATION PROCEDURE 374 A.3.2 TYPICAL SYSTEM COMPONENT DATA 379
A.3.3 EQUIVALENT CIRCUITS AND FORMULAS FOR NETWORK REDUCTION 380 A.4
IMPEDANCES OF.OVERHEAD LINES AND CABLES 383 A.4.1 SINGLE LINE
(TRANSPOSED) 383 A.4.2 DOUBLE CIRCUIT LINE (TRANSPOSED) 384 A.4.3 BUNDLE
CONDUCTOR 385 A.4.4 CABLE IMPEDANCES 385 CONTENTS A.5 REACH OF BACK-UP
ZONES ON PARALLEL LINES 387 A.5.1 PHASE-TO-PHASE FAULTS 387 A.5.2
PHASE-TO-EARTH FAULTS 389 A.6 TILTING OF THE QUADRILATERAL TOP LINE TO
AVOID OVERREACH 398 INDEX 403 |
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author | Ziegler, Gerhard |
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building | Verbundindex |
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dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
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dewey-search | 621.3191 |
dewey-sort | 3621.3191 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Energietechnik, Energiewirtschaft Maschinenbau / Maschinenwesen Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Energietechnik, Energiewirtschaft Maschinenbau / Maschinenwesen Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 3. ed. |
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id | DE-604.BV023197155 |
illustrated | Illustrated |
index_date | 2024-07-02T20:06:47Z |
indexdate | 2024-07-09T21:12:50Z |
institution | BVB |
isbn | 9783895783180 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016383460 |
oclc_num | 277086240 |
open_access_boolean | |
owner | DE-29T DE-12 DE-91 DE-BY-TUM DE-83 DE-M347 |
owner_facet | DE-29T DE-12 DE-91 DE-BY-TUM DE-83 DE-M347 |
physical | 406 S. Ill., graph. Darst. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Publicis Corporate Publ. |
record_format | marc |
spelling | Ziegler, Gerhard Verfasser aut Numerical distance protection principles and applications [author: Gerhard Ziegler] 3. ed. Erlangen Publicis Corporate Publ. 2008 406 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Electric power systems Protection Protective relays Numerisches Verfahren (DE-588)4128130-5 gnd rswk-swf Differentialschutz (DE-588)4291365-2 gnd rswk-swf Distanzschutz (DE-588)4150233-4 gnd rswk-swf Digitaltechnik (DE-588)4012303-0 gnd rswk-swf Distanzschutz (DE-588)4150233-4 s Digitaltechnik (DE-588)4012303-0 s DE-604 Differentialschutz (DE-588)4291365-2 s 1\p DE-604 Numerisches Verfahren (DE-588)4128130-5 s 2\p DE-604 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016383460&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 | Ziegler, Gerhard Numerical distance protection principles and applications Electric power systems Protection Protective relays Numerisches Verfahren (DE-588)4128130-5 gnd Differentialschutz (DE-588)4291365-2 gnd Distanzschutz (DE-588)4150233-4 gnd Digitaltechnik (DE-588)4012303-0 gnd |
subject_GND | (DE-588)4128130-5 (DE-588)4291365-2 (DE-588)4150233-4 (DE-588)4012303-0 |
title | Numerical distance protection principles and applications |
title_auth | Numerical distance protection principles and applications |
title_exact_search | Numerical distance protection principles and applications |
title_exact_search_txtP | Numerical distance protection principles and applications |
title_full | Numerical distance protection principles and applications [author: Gerhard Ziegler] |
title_fullStr | Numerical distance protection principles and applications [author: Gerhard Ziegler] |
title_full_unstemmed | Numerical distance protection principles and applications [author: Gerhard Ziegler] |
title_short | Numerical distance protection |
title_sort | numerical distance protection principles and applications |
title_sub | principles and applications |
topic | Electric power systems Protection Protective relays Numerisches Verfahren (DE-588)4128130-5 gnd Differentialschutz (DE-588)4291365-2 gnd Distanzschutz (DE-588)4150233-4 gnd Digitaltechnik (DE-588)4012303-0 gnd |
topic_facet | Electric power systems Protection Protective relays Numerisches Verfahren Differentialschutz Distanzschutz Digitaltechnik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016383460&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT zieglergerhard numericaldistanceprotectionprinciplesandapplications |